VLSI Design Concept for Parallel Iterative Algorithms Project Report

Introduction to VLSI Design Concept for Parallel Iterative Algorithms Project:

Designing an circuit becomes more complicated, especially when the Very Large Scale Integration (VLSI) technology node Keeps shrinking down to Nano scale level. Nano-technology allows integration of number of IP macro-cells on a single chip which leads to the development of Dual-core CPU and parallel computing.

A design of parallel iterative algorithm takes to different VLSI technologies in terms of area, power and timing delay. This paper discuss about the efficient strategy for balancing the number of iterations and the computational complexity. In case of having an hardware platform, which requires an iteration step of an iterative algorithm to execute k times, then this situation can be solved by executing the iterative steps in parallel platform. For this we use 

  • Jacobi method – This method computes the EVD of n×n symmetric matrix iteratively by applying a sequence of orthonormal rotations to the left and the right of the matrix.

Architecture Consideration is necessary to simplify the CORDIC architecture. It is possible to implement a full Jacobi EVC array into a single FPGA device. We could only realize a 6×6 multicore array at most in the biggest Xilinx FPGA device, so we must simplify the CORDIC architecture, the first step is modifying a simplified scaling free μ-rotation CORDIC, this simplified PE has 2 adders, 2 shifters and 4 multiplexers, and it reduces the number of inner iterations from 16 or 32 times for a full CORDIC with word length 16 and 32 bits to 6 inner iterations with CORDIC circular rotation mode. 

Experimental results for an cyclic–by–row parallel Jacobi EVD method in Matlab gives an result of

  • Full rotation CORDIC with 32 iteration steps.
  • Half rotation CORDIC with 16 iteration steps.
  • Simplified μ-rotation CORDIC with one single inner iteration step (μ-CORDIC).
  • Simplified μ-rotation CORDIC with 6 inner iteration

FPGA implementation have a modeled μ-rotation CORDIC PE in VHDL and compared with a full-pipeline CORDIC which is generated, experimental results also show that a 25×25 full Jacobi EVD array can be embedded into Xilinx XC5VL330 65nm FPGA device.

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Final Year Electrical and Electronic EEE B Tech & BE project

The final year Electrical and Electronic EEE B Tech & BE project is based on Analysing of Bangladesh power system. The data is based on their requirement of the major components and according to full details from the Power Generation Company Bangladesh (PGCB).

Company all the major components like Buses,Generator,TapTransformer,Capacitor,Motors and Loads are given the counting by the company itself But, this tool is Identify to analyse contingency of the power system. To do this we take details from the database.

Total Project Report Components & Roles:

The Major role is to perform the selection operation from the database.to, perform this suitable software to analysis this which new product available in market. Select all the information from the PSAF. The PSAF (power system application Framework)This framework is taking care of the table entry data and picture or graphical mode data ,the diagram which are in single line for drawing options other one is Generating for report to simulation. The framework is developed by CYME international TD Inc. This is the tool we can use for perfect matching in Bangladesh system to collect. The version is used for this PSAF 2.81(Revision 2.8).this is the overall operation to perform the PSAF.

The constructing the data base data should select the suitable for the software, it come constructing the network, we provide all the information from the PGCB in PSAF. All the network select can run the process of the simulation. The Simulation is the process which is run the real time process on all time, and this takes the abstract level of the system all the times. Simulation take the all the information form the source.

By taking the data from the table creates low power voltage problem. By this we can use to solves the problem is Newton-Rap son, and this the method take all the fault conditions and solves the first.

Download Engineering Final Year Electrical and Electronic EEE B Tech & BE project Report, Abstract, Documentation and PPT Seminar.

Axial Force Sensor for a Semi-Autonomous Snake Robot Final Year Project Abstract

This Electronics and Telecommunication project mainly explained about how the semi autonomous snake robot uses the Axial Force sensor. By using this technology we can control the difficulty places in industry. And the snake robot mainly uses the sensors. There use the four sensors in four sides and also use the microcontroller for the purpose of   controlling the robot. In this technology we used sensors whenever the temperature increases in the industry then automatically sensor give the signal to the microcontroller the microcontroller then automatically active the robot and we can avoid the problems in industry. Normally the robots cannot access the data easily but by using the mobile robots in that we used the sensors and microcontroller these are worked with wireless communication. The mobile robot use the 3D technology to find the location, in 3D it uses 3D sensor.

Snake Robot Features and Advantages:

                         Snake robot is the robot and it consist of many joints and these snake robots are free to move anywhere .this robots can roll, extension and pitch. Firstly implemented the joints close to each other all this become universal joint. This technique is not suitable for all projects; next technology is the joints are made based on angles. This technique is called DOF. Here first take a sphere and next cutting in to half then the two directions can be found, if we rotate that sphere then another two directions also covered. This DOF technique is implemented in the snake robots. this project mainly used in industries.

RC Phase Shift Oscillator ECE Mini Project

The main aim of the RC Phase Shift Oscillator is to provide the phase shift of 360 . If we give a Sinusoidal signal as the input then the oscillator gives the output signal same as input signal but with the phase shift of 360. Actually in oscillator we don’t give input, without giving any input we get the output. With By changing the Resisters and Capacitors the output signal frequency is changed, this ECE mini project can be done by using variable capacitors and resisters. It is same as the LC tank circuit. Phase shift oscillators can be used as the Low frequency oscillator.

The components used in this project are Transistor BC 548, it is the silicon type and NPN type, Resisters ((0-100kΩ variable Resistance), capacitor (0.47µf), voltage (5volts).

The R(Resister) and C(Capacitor),RC combination gives a phase shift of 60. To maintain sustained oscillation the phase shift should be maintained is around 360. It can be used only for Low frequencies .

RC combination produces the phase shift of 180 and Transistor produces 180 . The total phase shift provided by this circuit is 360.

F (oscillation) =1/2*π*RC*6^0.5

Resistance is passive electronic device, the resistance of the resister can be found by using colour coding, and mainly there are two types of resisters fixed and variable resisters. Fixed resisters are carbon fixed, carbon film, metal film and wire wound resistors. And variable Resisters are Rheostat type and Potentiometric type.

Transistor is a three layer electronic device. Here in this project we used is npn type of transistor.

The main application of this project is used in low frequency circuits.

RC Phase Shift Oscillator is the simplest oscillator and it can generate sign signals, rectangular waves, Square waves, it is very cheapest product to buy anyone. It can automatically generate signals for guitar and other applications. 

Download RC Phase Shift Oscillator ECE Mini Project full Report.

Electrical Projects For Diploma Students

List of electrical projects for diploma students:

Information available here is part of electrical projects for diploma students and electrical engineering final year b.tec students. Diploma students can search for project information from this site and downlod project report,abstracts,ppt,seminar topics,base papers which will be useful as reference documents for diploma projects.

submit electrical projects for diploma students to us.

Links to download  electrical projects for diploma students:

  1. Time Operated Appliances Control ECE Project
  2. Thyristor ECE Seminar Report
  3. Project on A Data-Centric Multi-Hop MAC Protocol for Underwater Acoustic Sensor Networks
  4. RFID Based Telemedicine System ECE Seminar Project
  5. Microcontrollar Based Digital Clock with Alarm Project

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Wireless Communication Projects 2010

List of wireless communication projects 2010:

Electronics and communication students can download wireless communication projects 2010 from this site. We provide latest wireless communication projects with project report, project abstract and ppt. Information available here will be useful as reference documents for final year students.

submit wireless communication projects 2010 to us.

Links to download wireless communication projects 2010:

  1. Wireless Ac Motor Speed Control Using TRIAC
  2. Pc Regimented Defence Android Using Zigbee
  3. WIRELESS DC MOTOR SPEED AND DIRECTION CONTROL USING IR COMMUNICATION
  4. WIRELESS AC/DC DEVICE CONTROL FOR APPLIANCES USING REMOTE CONTROL ABSTRACT
  5. WIRELESS DATA ENCRYPTION AND DECRYPTION USING RF COMMUNICATION

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Ece And EEE Projects With Low Cost

List of ece and eee projects with low cost: 

  Engineering final year students can request for ece and eee projects with low cost to us by sending mails with required project details. We will try to help you to find best option for getting this project form this site.

submit ece and eee projects with low cost to us.

Links to download ece and eee projects with low cost:  

  1. Student Administration Automation System using RFID system
  2. Pc Regimented Defence Android Using Zigbee project
  3. Performance Evaluation of AODV Routing Protocol in MANETS
  4. A Practical Miniaturized U-Slot Patch Antenna with Enhanced Bandwidth
  5. A Spatial Medium Filter for the Noise Removal in Digital Images
  6. Controlling Electrical Appliances through TV Remote project

download more related ece and eee projects with low cost.

Ece and EEE Projects With Ppt

List of ece and eee projects with ppt: 

 Electronics and electrical students can download ece and eee projects with ppt for every ece and eee seminar topic available in this site. Students can find latest paper presentations which can be used as reference for final year seminar topics.

                              submit ece and eee projects with ppt to us.

Links to download  ece and eee projects with ppt: 

  1. Two Level Cascaded Inverter with Elimination of Low Frequency Harmonics Using Micro Controller
  2. Industrial security system with alerts using auto dialer
  3. Ultrasonic Range Finder Using Microcontroller
  4. Optimal Residential Load Control with Price Prediction in Real-Time Electricity Pricing Environments
  5. Design of Discrete Controller via a Formal Approach Order reduction Technique for Discrete Systems
  6. Artificial Neural Network Applied Economic Generation Scheduling
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Two Level Cascaded Inverter with Elimination of Low Frequency Harmonics Using Micro Controller

Project Title: Two Level Cascaded Inverter with Elimination of Low Frequency Harmonics Using Micro Controller

Software Requirements:  Voltage Source Inverter, PWM Techniques, CRO.

Project Description: The main objective of developing Two Level Cascaded Inverter with Elimination of Low Frequency Harmonics Using Micro Controller is to provide best electrical and electronics project on P89V51RD2 80C51 microcontroller. Chips and micro controllers have been placed in circuit and the out can be displayed on CRO.

Download Two Level Cascaded Inverter with Elimination of Low Frequency Harmonics Using Micro Controller EEE Project, Abstract, Synopsis, Documentation, Paper presentation, ppt.

Optimal Residential Load Control with Price Prediction in Real-Time Electricity Pricing Environments

  • Project Title: Optimal Residential Load Control with Price Prediction in Real-Time Electricity Pricing Environments.

  •  Environment: Microcontroller, Digital Logic Circuits, Smart grid

 Project Description:  The main objective of developing this Optimal Residential Load Control with Price Prediction in Real-Time Electricity Pricing Environments Electrical project is to provide efficient load control method in the electricity business world. The main purpose of this system is to give possible solution to how to reduce the power consumption in home and office areas.

The project is works with smart meter where each customer has to keep it their homes and business offices and these are associated with energy scheduling methods. Micro controllers are used to implement this electrical application and this project consists of electricity retailer information, generator information, and electricity business world details.

Download Optimal Residential Load Control with Price Prediction in Real-Time Electricity Pricing Environments Project Paper Presentation