tag:blogger.com,1999:blog-1044518445953049712024-03-13T21:31:27.706-07:00Electrical Electronics Engineering Projects,Thesis, dissertations and engineering EbooksContain lots of Sample Projects and thesis, engineering E-books for Electrical & Electronics engineering Students. Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.comBlogger131125tag:blogger.com,1999:blog-104451844595304971.post-48983157118765951992013-01-01T07:25:00.000-08:002013-01-01T07:25:26.496-08:00Project On Ultrasound Gesture Detection<div dir="ltr" style="text-align: left;" trbidi="on">
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In this project, ultrasound around 24kHz was used to detect movement near an
object. Waving a hand or other solid object near the source of the ultrasound
(speaker) causes a shift in the frequency of the sound, which is then detected
by a microphone. We detected characteristic shifts in frequency to determine
whether motion was towards (push) or away from (pull) the microphone. Two modes
of visual indication were used to display the results of the motion detection:
blinking LEDs and a computer display. With the blinking LEDs, a different color
LED would light up according to the direction of motion detected. In the
computer animation, the waveform would be displayed on screen along with
markings of which parts are pulls and pushes. Sections of the waveform that
represent different motions would be marked as push or pull.</div>
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<a href="http://2.bp.blogspot.com/-kgup0-PqG_4/UOL_pegILrI/AAAAAAAABKg/BpQrc-PyZ9s/s1600/fullPfdfdroj.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="240" src="http://2.bp.blogspot.com/-kgup0-PqG_4/UOL_pegILrI/AAAAAAAABKg/BpQrc-PyZ9s/s320/fullPfdfdroj.jpg" width="320" /></a></div>
<div style="text-align: justify;">
<b>Download Link:</b></div>
<div style="text-align: justify;">
<a href="http://www.mediafire.com/?03qgbje19kp0093">http://www.mediafire.com/?03qgbje19kp0093</a><b><br /></b></div>
</div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com19tag:blogger.com,1999:blog-104451844595304971.post-52795896534397300142013-01-01T06:51:00.001-08:002013-01-01T06:52:06.544-08:00Project on Thermistor Respiratory Monitor<div dir="ltr" style="text-align: left;" trbidi="on">
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<span style="font-family: "Times New Roman","serif"; font-size: 12.0pt; mso-fareast-font-family: "Times New Roman";">For
our project, we wanted to create a solution to a real-world problem. Many
biomedical devices, such as commercially available respiratory monitors, are
designed for the developed world and require a stable power-supply to operate.
We wanted to implement a solution that is adaptable to different environments. </span></div>
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<span style="font-family: "Times New Roman","serif"; font-size: 12.0pt; mso-fareast-font-family: "Times New Roman";">Our
device uses several concepts we learned this semester in College. We use analog-to-digital conversions to
sample readings from both the thermistor and the battery, pulse-width
modulation to generate a signal for the speaker, and timers to switch between
tasks. Our implantation also includes various analog circuitry for voltage
regulation and signal amplification. Developing a robust and accurate respiratory
monitor served to be a challenging, yet rewarding experience.</span></div>
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<br /></div>
<div class="separator" style="clear: both; text-align: center;">
<a href="http://4.bp.blogspot.com/-7ofbHtKioFI/UOL3NFFXZlI/AAAAAAAABKQ/QCnuzooQvP4/s1600/project_uuuuuupic.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="240" src="http://4.bp.blogspot.com/-7ofbHtKioFI/UOL3NFFXZlI/AAAAAAAABKQ/QCnuzooQvP4/s320/project_uuuuuupic.jpg" width="320" /></a></div>
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<b><span style="font-family: "Times New Roman","serif"; font-size: 12.0pt; mso-fareast-font-family: "Times New Roman";">Download The Project:</span></b></div>
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<span style="font-family: "Times New Roman","serif"; font-size: 12.0pt; mso-fareast-font-family: "Times New Roman";"><a href="http://www.mediafire.com/view/?ib2wap4cu7e437l">http://www.mediafire.com/view/?ib2wap4cu7e437l</a></span></div>
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Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com3tag:blogger.com,1999:blog-104451844595304971.post-49649432236878920372012-12-28T07:43:00.004-08:002013-01-01T06:52:17.535-08:00Engineereing Ebooks: Measurements and instruments third Edition<div dir="ltr" style="text-align: left;" trbidi="on">
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'Measurement and Instrumentation Principles' is the latest edition of a
successful book that introduces undergraduate students to the
measurement principles and the range of sensors and instruments that are
used for measuring physical variables. Completely updated to include
new technologies such as smart sensors, displays and interfaces, the 3rd
edition also contains plenty of worked examples and self-assessment
questions (and solutions). In addition, a new chapter on safety issues
focuses on the legal framework, electrical safety and failsafe designs,
and the author has also concentrated on RF and optical wireless
communications. Fully up-to-date and comprehensively written, this
textbook is essential for all engineering undergraduates, especially
those in the first two years of their course.</div>
<br />
<div class="separator" style="clear: both; text-align: center;">
<a href="http://images.betterworldbooks.com/780/Measurement-and-Instrumentation-Principles-Morris-Alan-S-EB9780080496481.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="320" src="http://images.betterworldbooks.com/780/Measurement-and-Instrumentation-Principles-Morris-Alan-S-EB9780080496481.jpg" width="237" /></a></div>
<br />
<b> Download Book:</b><br />
<a href="http://www.mediafire.com/view/?wbjecsnt5sls788">http://www.mediafire.com/view/?wbjecsnt5sls788</a><br />
<br /></div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com2tag:blogger.com,1999:blog-104451844595304971.post-62631843287290512962012-09-21T10:18:00.001-07:002012-09-21T10:19:17.429-07:00Project on Integrated Farming System using Microcontroller<div dir="ltr" style="text-align: left;" trbidi="on">
<div style="text-align: justify;">
People heavily rely on large-scale farms to grow and ship produce to
their local grocery stores. These farms are not always domestic and can
be located on the other side of the world. This has become an issue
today due to the high transportation costs associated with bringing
copious amounts of produce to crowded urban areas as well as to areas
that cannot sustain themselves with the local land. Furthermore, the
preservatives that are required to allow produce to make it to market
inflate this cost. In addition to these economic costs, there are the
environmental impacts associated with transporting across these
distances. </div>
<br />
<div style="text-align: justify;">
<b>Integrated Farming System (IFS)</b> Project’s goal is to
solve these issues by bringing the farms to these areas through an
automated farming system. This system will be enclosed either in its own
facility or housed within another existing building. The key is to
minimize the amount of real estate required for these systems relative
to how much land would be needed by a comparable farm. The constructed
model focused on the caring aspects of the overall system. This
prototype has proven the feasibility of the system’s design to save
space while reducing crop costs.
</div>
<div style="text-align: justify;">
<i>Integrated Farming System (IFS)</i> would be able to
automatically seed, care for and harvest crops without any user
assistance. Although not large, the prototype shows that this overall
system is plausible as well as expandable due to its modular design.</div>
<div style="text-align: justify;">
<br /></div>
<div style="text-align: justify;">
<br /></div>
<div style="text-align: justify;">
<b>Download the Project:</b></div>
<div style="text-align: justify;">
<a href="http://www.mediafire.com/view/?cwyxq8qjk1lsvw9"><b> </b><b>Integrated Farming System (IFS).pdf</b></a></div>
<br /></div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com23tag:blogger.com,1999:blog-104451844595304971.post-22697902684677948852012-09-17T09:11:00.003-07:002012-09-17T09:11:55.586-07:00PIC in Practice: A Project-based Approach<div dir="ltr" style="text-align: left;" trbidi="on">
<div style="text-align: justify;">
<b>PIC in Practice</b> is a graded course based around the practical use
of the PIC microcontroller through project work. Principles are
introduced gradually, through hands-on experience, enabling students to
develop their understanding at their own pace. <br /><br />Dave Smith has
based the book on his popular short courses on the PIC for
professionals, students and teachers at Manchester Metropolitan
University. The result is a graded text, formulated around practical
exercises, which truly guides the reader from square one.<br /><br />The
book can be used at a variety of levels and the carefully graded
projects make it ideal for colleges, schools and universities. Newcomers
to the PIC will find it a painless introduction, whilst electronics
hobbyists will enjoy the practical nature of this first course in
microcontrollers.</div>
<div class="separator" style="clear: both; text-align: center;">
<a href="http://www.ebook3000.com/upimg/201005/16/161414271192.jpeg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" src="http://www.ebook3000.com/upimg/201005/16/161414271192.jpeg" /></a></div>
<b>Download Link:</b><br />
<a href="http://www.mediafire.com/?q04r932d5vrtyq2">http://www.mediafire.com/?q04r932d5vrtyq2</a><br />
<div style="text-align: justify;">
<br /></div>
</div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com2tag:blogger.com,1999:blog-104451844595304971.post-56801182267167626332012-09-17T07:00:00.001-07:002012-09-17T07:00:58.596-07:00Electronic Circuit Analysis and Design Ebook<div dir="ltr" style="text-align: left;" trbidi="on">
<div style="text-align: justify;">
<b class="h3color">Donald A. Neamen</b></div>
<div style="text-align: justify;">
This introduction to the concepts of microelectronic circuits and
devices covers important semiconductor devices and their applications;
analog electronics, including operational amplifiers and integrated
circuits; and digital circuits. PSPICE is incorporated throughout the
text in examples, and a separate appendix contains a PSPICE introduction
and examples for DC, AC and transient analysis. The text's coverage of
field effect transistors and basic FET amplifiers reflects the industry
popularity of enhancement mode MOSFET devices. However, a balance
between bipolar and FET circuit analysis is found in each chapter.</div>
<div class="separator" style="clear: both; text-align: center;">
<a href="http://ecx.images-amazon.com/images/I/41qeh9BomLL._SS500_.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="320" src="http://ecx.images-amazon.com/images/I/41qeh9BomLL._SS500_.jpg" width="320" /></a></div>
<div style="text-align: justify;">
<br /></div>
<div style="text-align: justify;">
<b>Download:</b></div>
<div style="text-align: justify;">
<a href="http://www.mediafire.com/?pql7c7fnbn9erpr">http://www.mediafire.com/?pql7c7fnbn9erpr</a></div>
<div style="text-align: justify;">
<a href="http://www.mediafire.com/?z1f22xdr9xwq8kn">http://www.mediafire.com/?z1f22xdr9xwq8kn</a></div>
</div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-16650653397718532512012-09-07T10:07:00.002-07:002012-09-07T10:07:39.614-07:00Project On Security Robot Surveillance<div dir="ltr" style="text-align: left;" trbidi="on">
As robotic technology continues to advance, robots are becoming capable
of performing ever more complex tasks. Robotic workers never get tired,
do not need to be paid, and can be made to perform even the most
dangerous tasks without concern. The purpose of this project was to
combine several existing technologies, wireless internet, neural
networks, and hardware controllers, into a system that can perform the
job of a night security guard.<br />
<br />
<div class="separator" style="clear: both; text-align: center;">
<a href="http://projects-circuits.com/wp-content/uploads/2012/06/Security-Robot-Surveillance-Project.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="239" src="http://projects-circuits.com/wp-content/uploads/2012/06/Security-Robot-Surveillance-Project.jpg" width="320" /></a></div>
<b>Download Full Project:</b><br />
<a href="http://projects-circuits.com/wp-content/uploads/2012/06/SecurityRobotProjectReport.pdf">Project On Security Robot Surveillance.pdf</a><br />
</div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-23259964258483854862012-09-07T08:47:00.005-07:002012-09-07T08:48:27.662-07:00Kite Power Generation Project – Wind Power from Kites<div dir="ltr" style="text-align: left;" trbidi="on">
<div style="text-align: justify;">
The goal of this project was to study the feasibility of using tethered kites to generate power from the wind. Generating electricity using kites instead of wind turbines may have certain advantages, particularly for developing nations. These include generating power at low cost while eliminating certain environmental problems associated with wind turbines. Another advantage is that kites can fly at greater heights than wind turbines can operate. Since wind speed increases with height, and available power is proportional to wind speed cubed, the wind power potential is larger for kites. A literature review was conducted of previous studies of kite power systems. A mechanism was designed to convert the oscillating tether tension caused by the vertical motion of a kite into rotary shaft motion to drive a generator. The mechanism is based on a rocking, balanced beam of 5 meter length attached to a power train and Sprag clutch. The design uses a commercially available sport kite which is 10 meters squared in size. A previously developed MATLAB code was used to model the final system design, and power outputs comparable to small wind turbines were predicted. </div>
<div style="text-align: justify;">
<br /></div>
<div class="separator" style="clear: both; text-align: center;">
<a href="http://www.wired.com/news/images/full/kitegen1_f.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="240" src="http://www.wired.com/news/images/full/kitegen1_f.jpg" width="320" /></a></div>
<div style="text-align: justify;">
<b>Download Full Project:</b></div>
<div style="text-align: justify;">
<a href="http://projects-circuits.com/wp-content/uploads/2012/05/Wind_Power_Generation_from_Kites.pdf">Wind_Power_Generation_from_Kites.pdf</a></div>
</div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-26542673919502197212012-09-06T09:51:00.003-07:002012-09-06T09:52:00.816-07:00Autonomous Underwater Vehicle Design Project<div dir="ltr" style="text-align: left;" trbidi="on">
Autonomous vehicles are increasingly investigated for use in
oceanographic studies, underwater surveillance, and search operations.
Research currently being done in the area of autonomous underwater craft
is often hindered by expense. This project seeks to complete the
construction, optimization, and control software development of an
inexpensive underwater vehicle. During the course of the project all of
the vehicle’s mechanical and electrical subsystems were completed.
Propeller-driven primary thrusters using a magnetically coupled drive
system were optimized and manufactured. A battery powered electrical
subsystem was also designed and installed on the vehicle. A simulation
of the vehicle’s control algorithm was developed in MATLAB and several
full vehicle tests were conducted.<br />
<div class="separator" style="clear: both; text-align: center;">
<a href="http://www.niot.res.in/SAVe/SAVe_2014/auv.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="320" src="http://www.niot.res.in/SAVe/SAVe_2014/auv.jpg" width="320" /></a></div>
<b>Download Project:</b><a href="http://projects-circuits.com/wp-content/uploads/2012/05/Autonomous-Underwater-Vehicle-Design-Project_Report.pdf">Autonomous Underwater Vehicle Design Project.pdf</a></div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-54918834017895294872012-09-06T09:27:00.000-07:002012-09-06T09:27:08.585-07:00Thesis on Pulse Oximeter Calibrator <div dir="ltr" style="text-align: left;" trbidi="on">
<div style="text-align: justify;">
<strong>Pulse Oximeters</strong> are standard medical electronics
devices used for continuous patient monitoring of arterial oxygen
saturation (SpO2) and heart rate (HR). Initial calibration of pulse
oximeters is conducted by inducing hypoxemia in healthy human volunteers
to obtain blood oxygenation levels as low as 70% and comparing pulse
oximeter measurements to that of a reference CO-oximeter.</div>
<div style="text-align: justify;">
It was the goal of this project to create a device which would increase
the accuracy of the calibration process and potentially set the stage
for the elimination of the need for human volunteers. Such a device
would also significantly reduce cost and time for companies attempting
to bring a new model of pulse oximeter to market. A device such as this,
even if it is not used as a substitute for testing on humans, would
allow the company the opportunity to test their device before making the
expensive commitments involved with FDA testing. </div>
<div style="text-align: justify;">
<br /></div>
<div class="separator" style="clear: both; text-align: center;">
<a href="http://i.cmpnet.com/planetanalog/2010/08/C0614-Figure4.gif" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="193" src="http://i.cmpnet.com/planetanalog/2010/08/C0614-Figure4.gif" width="320" /></a></div>
<div style="text-align: justify;">
<b>Download Full Thesis:</b></div>
<div style="text-align: justify;">
<a href="http://projects-circuits.com/wp-content/uploads/2012/05/Pulse_Oximeter_Calibrator_Project.pdf">Pulse Oximeter Calibrator.pdf </a></div>
</div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-85439215609136532642012-09-06T08:50:00.002-07:002012-09-06T08:51:14.535-07:00Project On Low Cost Scanning Laser Rangefinder <div dir="ltr" style="text-align: left;" trbidi="on">
<div style="text-align: justify;">
As computers and software become more powerful and the area of their application expands, the traditional mouse and keyboard, become more restrictive. Many different devices have been developed to increase Human Computer Interaction (HCI) and this development continues today. The most commonplace Human Computer Interactive device on the commercial market today is the Touch Screen. However, even the touch screen restricts HCI to some extent. These shortcomings and the search to find devices that overcome them were the driving force behind the development of a Scanning Laser Rangefinder for this thesis project.</div>
<div class="separator" style="clear: both; text-align: center;">
<a href="http://letsmakerobots.com/files/userpics/u1533/Laser_rangefinder.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="240" src="http://letsmakerobots.com/files/userpics/u1533/Laser_rangefinder.jpg" width="320" /></a></div>
<b>Download the Project:</b><br />
<a href="http://www.mediafire.com/?jz7dzzqqha5mbqp">http://www.mediafire.com/?jz7dzzqqha5mbqp</a><br />
<div style="text-align: justify;">
<br /></div>
</div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-49155031577962007832012-09-06T08:28:00.003-07:002012-09-06T08:44:11.489-07:00Project on Wireless message Communicator<div dir="ltr" style="text-align: left;" trbidi="on">
The main function of these devices is to send and receive text messages
to and from another device.
It is very much like communicating with a walkie-talkie, except with
text and smoother communication scheme.
We chose this as our final project because we were inspired by the
recent technological trend in wireless communication systems. Also, we
thought it could be a cool gadget for our cars so that the cars can
communicate with each other on a road trip. (Obviously it is not
intended for the driver to use.)
<br />
<br />
<div class="separator" style="clear: both; text-align: center;">
<a href="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2001/jjt9/add4jjt9/setup.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="158" src="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2001/jjt9/add4jjt9/setup.jpg" width="320" /></a></div>
<br />
<b>Download The Project:</b><br />
<a href="http://www.mediafire.com/?2tyspb8ntvr2mkm">http://www.mediafire.com/?2tyspb8ntvr2mkm</a><br />
<br />
<br /></div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-64836281084128957832012-09-05T10:25:00.004-07:002012-09-06T08:44:11.491-07:00Autonomous Smart Trash system Project/Thesis<div dir="ltr" style="text-align: left;" trbidi="on">
We have designed and built a 'proof of concept' prototype for Project
Green Stations, an externally funded student group with the following
mission statement:
<br />
<ol><i>Project Green Stations is all about changing the way people
see the environment. Imagine the go-green movement as a brand. Solar
panels, Toyota Priuses, and waste receptacles are all points of
interaction with your idea of going green.
</i></ol>
<ol><i>
By designing elegant, simple, and technologically advanced waste
bins, we improve one element that affects that perception; one element
that almost all students, faculty, and staff at University see every day.
</i></ol>
<ol><i>
We plan to have the first full prototype manufactured over the summer
and ready to go before August. Over the next academic year, we will be
looking to further refine the aesthetics and the hardware to best fit
our needs. The expectation is by the beginning of the 2013-2014 academic
year, we will begin full scale implementation. </i></ol>
<div class="separator" style="clear: both; text-align: center;">
<a href="http://induloop.files.wordpress.com/2011/04/big-belly-2.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="258" src="http://induloop.files.wordpress.com/2011/04/big-belly-2.jpg" width="320" /></a></div>
<b>Download Project:</b><br />
<a href="http://www.mediafire.com/view/?t2l8876trb4li1s">http://www.mediafire.com/view/?t2l8876trb4li1s</a><br />
<ol><i> </i></ol>
</div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-83841152625453471192012-08-30T08:45:00.001-07:002012-08-30T08:46:07.393-07:00Project on CMR Robot Arm<div dir="ltr" style="text-align: left;" trbidi="on">
ur project was mainly designed for the Cornell Mars Rover project team (CMR), which will be using the robotic arm for competition to complete many different tasks in the deserts of Southern Utah.<br />
We created the control systems for a robot arm that is able to use three different end attachments to perform a variety of specified actions, include pushing buttons, scooping up dirt or other items, picking things up with a hook, flicking switches, and taking voltage readings for solar panels. This robot arm uses the Arduino Mega2560 to take in commands from a user to determine which position to move to and what actions the arm needs to perform. It uses four different servo motors to control the four degrees of freedom over the wrist, elbow, and shoulder joints. Also, it controls three end attachments that are attached at the end of the arm: the hook, the scoop, and the control panel interface (CPI). Our controls are also able to open and close the scoop‟s lid servo and turn on and off the brush of the CPI, which has two probes attached that takes the voltage readings.<br />
<br />
<div class="separator" style="clear: both; text-align: center;">
<a href="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2012/cc722_spw54/Final/Arm.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="166" src="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2012/cc722_spw54/Final/Arm.jpg" width="320" /></a></div>
<b>For Full Project Download here:</b><br />
<a href="http://www.mediafire.com/view/?4msc6ondf00mhns">http://www.mediafire.com/view/?4msc6ondf00mhns</a><br />
<br /></div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-63691270773945201552012-08-28T10:01:00.002-07:002012-08-30T08:46:19.988-07:00PID Controller on FPGA for Temperature Control<div dir="ltr" style="text-align: left;" trbidi="on">
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<br />
The objective of this project was to implement a digital PID controller on
an FPGA for a control application. We designed a controller to track and
maintain a set point temperature of a water tank with lowest possible overshoot
while maintaining maximum possible rise time. Multiple controllers and heaters
were used to efficiently control the temperature. We used MATLAB to design our
controller and develop a model of our system from experimental data. The
heaters were driven using a PWM signal from the FPGA that was amplified using
BUZ 73 transistors.<br />
The motivation behind using FPGA to implement a PID controller rather than
microcontrollers or DSPs is because it provides a good balance between
performance and cost. Using microcontrollers, although they may be cheaper do
not provide enough processing power to effectively perform complex calculations
in real-time. Digital signal processors can implement complex algorithms quickly
but are expensive.<br />
<br />
<div class="separator" style="clear: both; text-align: center;">
<a href="http://people.ece.cornell.edu/land/courses/ece5760/FinalProjects/f2010/ma638_ca325_as2454/ma638_ca325_as2454/IMG_20101208_153215.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="240" src="http://people.ece.cornell.edu/land/courses/ece5760/FinalProjects/f2010/ma638_ca325_as2454/ma638_ca325_as2454/IMG_20101208_153215.jpg" width="320" /></a></div>
<b>Download the Project:</b><br />
<a href="http://www.mediafire.com/view/?76wrpkb9s73l32l">http://www.mediafire.com/view/?76wrpkb9s73l32l</a><br />
</div>
Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-6648275546872229622012-01-10T21:56:00.000-08:002012-01-10T21:56:41.791-08:00Wind and Solar Power Systems<div dir="ltr" style="text-align: left;" trbidi="on">Wind and solar energy are pollution-free sources of abundant power. With renewable power generation expected to become more and more profitable with open access to transmission lines and rapid growth around the world, the design, operation, and control of alternative energy resources becomes an essential field of study. "Wind and Solar Power Systems" provides a comprehensive treatment of this rapidly growing segment of the power industry. It provides the fundamentals of wind and solar power generation, energy conversion and storage, and the operational aspects of power electronics and the quality of power. It covers in detail the design, operation, and control methods applicable to stand-alone as well as grid-connected power systems and discusses the present status of and the on-going research in renewable power around the world."Wind and Solar Power Systems" stands as the most modern, complete book available on renewable energy. Electrical, environmental and mechanical engineering professionals along with policy-makers evaluating the renewable energy potential of their regions will find in it the background and the details they need for decision making. It provides the fundamentals of wind and solar power generation. It shows the engineer how to design a key features of the power system. It details the operation and control of stand-alone and grid-connected systems. It presents methods for extracting maximum power from a given site and discusses power quality issues. It offers profitability charts for quick estimates of the market potential of sites. It discusses past and present industry trends and its future growth potential. It includes energy maps of several countries useful for assessing the energy potential of any site.<br />
<br />
<div class="separator" style="clear: both; text-align: center;"><a href="http://img.docstoccdn.com/thumb/orig/51299105.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="320" src="http://img.docstoccdn.com/thumb/orig/51299105.png" width="212" /></a></div><b> Download:</b><br />
<a href="http://www.mediafire.com/?ha2w62qp1zgaq5z">http://www.mediafire.com/?ha2w62qp1zgaq5z</a></div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com7tag:blogger.com,1999:blog-104451844595304971.post-82018691264290284552012-01-09T08:57:00.000-08:002012-01-09T08:57:33.065-08:00Project On Radar Simulation with Optical Sensor<div dir="ltr" style="text-align: left;" trbidi="on">This is a project on radar simulation with optical sensor and in this system we are simulating the RADAR function with optical beam. We are providing an IR transmitter and receiver in place of RF transmitter and receiver. If any object, reflecting the IR rays back to receiver can be detected. This transmitter and receiver are placed on rotating antenna to detect angle of the object.<br />
<br />
<u><b> Download Mediafire:</b></u><br />
<a href="http://www.mediafire.com/?wbb8ieu4iza7hke"> http://www.mediafire.com/?wbb8ieu4iza7hke</a><br />
<br />
<span class="fullpost"></span></div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-11234173519910674272012-01-09T08:45:00.000-08:002012-01-09T08:45:15.085-08:00Vehicle Speed Control System Using RF Communication Project<div dir="ltr" style="text-align: left;" trbidi="on"><div style="text-align: justify;">The project is mainly used to control the speed of a moving vehicle according signal received by the receiver from transmitter. This project is developed based on EMBEDDED and RF Technology. When a vehicle enters a Danger Zone then the signal will be detected by the Rx which was transmitted by the Tx already placed in the Zone. The Signal received will be decoded by the microcontroller and alert the driver through a LCD Screen. According to signal received by Microcontroller controls the DC Motor Speed after a few seconds from the time it received the signal.</div><div style="text-align: justify;"><br />
</div><div class="separator" style="clear: both; text-align: center;"><a href="http://iskyworld.in/images/p1.png" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="307" src="http://iskyworld.in/images/p1.png" width="320" /></a></div><div style="text-align: justify;"><br />
</div><div style="text-align: justify;"><u><b> Download here:</b></u></div><div style="text-align: justify;"><a href="http://www.mediafire.com/?u2w5oaq566kmuc4">http://www.mediafire.com/?u2w5oaq566kmuc4</a></div><div style="text-align: justify;"><br />
</div><div style="text-align: justify;"><br />
</div><div style="text-align: justify;"><br />
</div></div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-33490685550482594512011-12-31T14:16:00.000-08:002011-12-31T14:16:26.940-08:00project on Bomb and Fire detection Robot<div dir="ltr" style="text-align: left;" trbidi="on">This is a good Robotics final year project on "bomb and fire detection robot" foe Electronics students which aims at designing and executing the bomb ,fire and obstacle detection. The IR sensor is a pair sensors has a receiver and a transmitter sensor. The transmitter sends the, and if the receiver senses any of the transmitted signal it indicates the presence of an obstacle. A micro-controller is used to control all operations. According to the motor operations the robot will operate as specified in program.<br />
<br />
<a href="http://www.mediafire.com/?hytueh7e704hr5p">http://www.mediafire.com/?hytueh7e704hr5p</a></div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com1tag:blogger.com,1999:blog-104451844595304971.post-89309235387330830992011-12-21T04:38:00.000-08:002011-12-21T04:38:55.223-08:00Project On Sonar SensCap<div dir="ltr" style="text-align: left;" trbidi="on">This device is to be worn on the head and around the hip to aid the visually impaired maneuver around obstacles. It provides information about obstacles near and around the head. When used with a cane, the user will have a complete sense of the topology of surrounding environment. This device decreases the dependence of the visually impaired on others and increases their safety. <br />
The device uses two ultrasonic sensors and a microcontroller to determine the proximity of the user to obstacles. The user has the option to choose between two modes of user feedback-headphones or vibrating motors. Both provide information about the location of and distance to an obstacle. The harder the motors vibrate or the louder the sound is, the closer the user is to an obstacle.<br />
<br />
<div class="separator" style="clear: both; text-align: center;"><a href="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2011/zb34_lc465/zb34_lc465/images/hat1.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="206" src="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2011/zb34_lc465/zb34_lc465/images/hat1.jpg" width="320" /></a></div><b> Download Project:</b><br />
<a href="http://www.mediafire.com/?f7wbnbcfv3tcb3c">http://www.mediafire.com/?f7wbnbcfv3tcb3c</a></div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-32143537622507250102011-09-23T00:51:00.000-07:002011-09-23T00:51:16.072-07:00Project on Advanced Vehicle Security System with Theft Control and Accident Notification<div dir="ltr" style="text-align: left;" trbidi="on">This is a Major final year project for Electronics engineering students on Advanced Vehicle Security System with Theft Control and Accident Notification which is designed to reduce the risk involved in losing the vehicle and providing accident notification which will reduce the rate of deaths. This is an inexpensive device which reduces the problem associated with accident notification and anti-theft control.<br />
<div class="separator" style="clear: both; text-align: center;"><a href="http://3.bp.blogspot.com/-eamCKqlgWjg/Tnw43W6G1HI/AAAAAAAABJs/pTzOa_-71VY/s1600/clip_image002.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="240" src="http://3.bp.blogspot.com/-eamCKqlgWjg/Tnw43W6G1HI/AAAAAAAABJs/pTzOa_-71VY/s320/clip_image002.jpg" width="320" /></a></div><b>Download Project:</b><br />
<a href="http://www.mediafire.com/?12nd5jxe19lsqrk">http://www.mediafire.com/?12nd5jxe19lsqrk</a><br />
</div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com7tag:blogger.com,1999:blog-104451844595304971.post-35898374835988326962011-09-22T06:02:00.000-07:002011-09-22T06:02:43.057-07:00Project on GSM Based Irrigation Water Supply Monitoring & Control System<div dir="ltr" style="text-align: left;" trbidi="on">The purpose of this project is to monitor and control the water flow to an irrigation system using Mobile Phone. This can be achieved by the use of soil moisture sensor, which senses the water content in the soil. This sensor output is given to a Microcontroller based control system for further data processing.<br />
<div class="separator" style="clear: both; text-align: center;"><a href="http://www.sswm.info/sites/default/files/toolbox/UNKNOWN%20Drip%20irrigation%20system%20arrangement.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="190" src="http://www.sswm.info/sites/default/files/toolbox/UNKNOWN%20Drip%20irrigation%20system%20arrangement.jpg" width="320" /></a></div><b>Download Project:</b><br />
<a href="http://www.mediafire.com/?sx5d3332hc1o4ck">http://www.mediafire.com/?sx5d3332hc1o4ck</a><br />
<br />
</div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-89335365599181199332011-09-19T12:17:00.000-07:002011-09-22T20:55:22.680-07:00Project On Gas detector Device<div dir="ltr" style="text-align: left;" trbidi="on"><!--[if gte mso 9]><xml> <o:OfficeDocumentSettings> <o:TargetScreenSize>800x600</o:TargetScreenSize> </o:OfficeDocumentSettings> </xml><![endif]--><!--[if gte mso 9]><xml> <w:WordDocument> <w:View>Normal</w:View> <w:Zoom>0</w:Zoom> <w:TrackMoves/> <w:TrackFormatting/> <w:PunctuationKerning/> <w:ValidateAgainstSchemas/> <w:SaveIfXMLInvalid>false</w:SaveIfXMLInvalid> <w:IgnoreMixedContent>false</w:IgnoreMixedContent> <w:AlwaysShowPlaceholderText>false</w:AlwaysShowPlaceholderText> <w:DoNotPromoteQF/> <w:LidThemeOther>EN-US</w:LidThemeOther> <w:LidThemeAsian>X-NONE</w:LidThemeAsian> <w:LidThemeComplexScript>X-NONE</w:LidThemeComplexScript> <w:Compatibility> <w:BreakWrappedTables/> <w:SnapToGridInCell/> <w:WrapTextWithPunct/> <w:UseAsianBreakRules/> <w:DontGrowAutofit/> <w:SplitPgBreakAndParaMark/> <w:EnableOpenTypeKerning/> <w:DontFlipMirrorIndents/> <w:OverrideTableStyleHps/> </w:Compatibility> <w:BrowserLevel>MicrosoftInternetExplorer4</w:BrowserLevel> <m:mathPr> <m:mathFont m:val="Cambria Math"/> <m:brkBin m:val="before"/> <m:brkBinSub m:val="--"/> <m:smallFrac m:val="off"/> <m:dispDef/> <m:lMargin m:val="0"/> <m:rMargin m:val="0"/> <m:defJc m:val="centerGroup"/> <m:wrapIndent m:val="1440"/> <m:intLim m:val="subSup"/> <m:naryLim m:val="undOvr"/> </m:mathPr></w:WordDocument> </xml><![endif]--><!--[if gte mso 9]><xml> <w:LatentStyles DefLockedState="false" DefUnhideWhenUsed="true"
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</style> <![endif]--> <div class="MsoNormal" style="text-align: justify;"><span lang="EN-GB" style="mso-ansi-language: EN-GB;">This is a gas detecting circuit capable of sensing many different types of gases.</span><span lang="EN-GB" style="mso-ansi-language: EN-GB;"> The sensor used is the GH-312 and from the datasheet it is capable of sensing gases like smoke</span><span lang="EN-GB" style="mso-ansi-language: EN-GB; mso-fareast-font-family: "Arial Unicode MS"; mso-hansi-font-family: "Arial Unicode MS";">, </span><span lang="EN-GB" style="mso-ansi-language: EN-GB;">liquefied gas</span><span lang="EN-GB" style="mso-ansi-language: EN-GB; mso-fareast-font-family: "Arial Unicode MS"; mso-hansi-font-family: "Arial Unicode MS";">, </span><span lang="EN-GB" style="mso-ansi-language: EN-GB;">butane and propane</span><span lang="EN-GB" style="mso-ansi-language: EN-GB; mso-fareast-font-family: "Arial Unicode MS"; mso-hansi-font-family: "Arial Unicode MS";">, </span><span lang="EN-GB" style="mso-ansi-language: EN-GB;">Methane</span><span lang="EN-GB" style="mso-ansi-language: EN-GB; mso-fareast-font-family: "Arial Unicode MS"; mso-hansi-font-family: "Arial Unicode MS";">, </span><span lang="EN-GB" style="mso-ansi-language: EN-GB;">alcohol</span><span lang="EN-GB" style="mso-ansi-language: EN-GB; mso-fareast-font-family: "Arial Unicode MS"; mso-hansi-font-family: "Arial Unicode MS";">, </span><span lang="EN-GB" style="mso-ansi-language: EN-GB;">hydrogen</span><span lang="EN-GB" style="mso-ansi-language: EN-GB; mso-fareast-font-family: "Arial Unicode MS"; mso-hansi-font-family: "Arial Unicode MS";">, </span><span lang="EN-GB" style="mso-ansi-language: EN-GB;">etc.</span></div><div class="separator" style="clear: both; text-align: center;"><a href="http://www.electronics-lab.com/projects/test/014/GH312Sensor.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="238" src="http://www.electronics-lab.com/projects/test/014/GH312Sensor.jpg" width="320" /></a></div><div class="MsoNormal" style="text-align: justify;"><b><span lang="EN-GB"> Download File:</span></b></div><div class="MsoNormal" style="text-align: justify;"><span lang="EN-GB"><a href="http://www.mediafire.com/?pgov1q9hs89bips">http://www.mediafire.com/?pgov1q9hs89bips</a></span></div></div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-21422880778889821762011-08-26T10:47:00.000-07:002011-08-26T10:47:28.656-07:00Project On Evolving neural robot<div dir="ltr" style="text-align: left;" trbidi="on"><div style="text-align: justify;">The Project is to build a mobile robot with a developed neural network such that it evolves to avoid collisions into a circular vertical white wall while traveling at the fastest speed and straightest line possible without human intervention or external computers. <br />
<br />
The completion of this project required extensive capacity and application on both hardware and software ends. In constructing the robot, we needed to build the custom prototype board, apply infrared sensors as neural inputs, implement stepper motors for robot motion, and provide a mobile power supply to the MCU. The purpose of these design factors is to allow the autonomous movement of the robot while minimizing the size of our robot, to accurately sense distance and collisions into the white wall of our arena, and to calculate the velocity precisely while providing sustainable torque to move our robot. On the software end, we needed to execute an evolutionary spiking neurons algorithm that interfaced with our hardware. The purpose of this was to integrate a spiking neural model with infrared sensors as inputs and motor speeds as outputs to determine robot velocity and direction. We also implemented the evolutionary model based on assessing random individuals of a randomly generated population through a fitness equation and improving the population by discarding the worst individual in the population with the worst fitness. The fitness equation measured by the velocity of the robot, the direction change, and the amount of activity from sensors. </div><div class="separator" style="clear: both; text-align: center;"><a href="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2007/jxd2/djd36_jxd2/HPIM0835.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="240" src="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2007/jxd2/djd36_jxd2/HPIM0835.jpg" width="320" /></a></div><div style="text-align: justify;"><b> Download Project:</b></div><a href="http://www.mediafire.com/?o8u0kfu4386kr1c">http://www.mediafire.com/?o8u0kfu4386kr1c</a><div style="text-align: justify;"><br />
</div><div style="text-align: justify;"><br />
</div></div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com0tag:blogger.com,1999:blog-104451844595304971.post-5896910752364332912011-08-26T08:20:00.000-07:002011-08-26T08:20:17.424-07:00Robotic Vacuum Cleaner Project<div dir="ltr" style="text-align: left;" trbidi="on">The robotic vacuum is mainly built from a circular piece of foam board.. The robotic vacuum uses a rotating brush underneath the unit to vacuum a carpet as it passes over it. Two stepper motors, aligned across the center axis of the robot, are used to accurately drive the robotic vacuum around a room. Because the body of the robot is circular and the steppers are placed along the center axis, the robot can spin in place in any direction. One free-spinning chair wheel is located at the rear of the robot to keep it balanced.<br />
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<div class="separator" style="clear: both; text-align: center;"><a href="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2006/hac24/topview.jpg" imageanchor="1" style="margin-left: 1em; margin-right: 1em;"><img border="0" height="240" src="http://people.ece.cornell.edu/land/courses/ece4760/FinalProjects/s2006/hac24/topview.jpg" width="320" /></a></div> <b>Download Project:</b><br />
<a href="http://www.mediafire.com/?u8ku388xc5jemt7">http://www.mediafire.com/?u8ku388xc5jemt7 </a><b><br />
</b></div>Shamimhttp://www.blogger.com/profile/14300160836808016977noreply@blogger.com3