Fault Tolerant Parallel Filters Based on Error Correction Codes

Also Available Domains Xilinx Vivado|Xilinx ISE

Project Code :TVMAFE175

Objective

In this brief, that idea is generalized to show that parallel filters can be protected using error correction codes (ECCs) in which each filter is the equivalent of a bit in a traditional ECC.

Abstract

Digital filters are widely used in signal processing and communication systems. In some cases, the reliability of those systems is critical, and fault tolerant filter implementations are needed. Over the years, many techniques that exploit the filters’ structure and properties
to achieve fault tolerance have been proposed. As technology scales, it enables more complex systems that incorporate many filters. In those complex systems, it is common that some of the filters operate in parallel, for example, by applying the same filter to different input signals.
Recently, a simple technique that exploits the presence of parallel filters to achieve fault tolerance has been presented. In this brief, that idea is generalized to show that parallel filters can be protected using error correction codes (ECCs) in which each filter is the equivalent of a bit
in a traditional ECC. This new scheme allows more efficient protection when the number of parallel filters is large. The technique is evaluated using a case study of parallel finite impulse response filters showing the effectiveness in terms of protection and implementation cost.

NOTE: Without the concern of our team, please don't submit to the college. This Abstract varies based on student requirements.

Specifications

Hardware requirement

             Processor               -    Pentium –III

 

Speed                                -    1.1 GHz

RAM                                 -    1 GB (min)

Hard Disk                          -   40 GB

Floppy Drive                     -    1.44 MB

Key Board                         -    Standard Windows Keyboard

Mouse                                -    Two or Three Button Mouse

Monitor                              -    SVGA

Software requirements

Operating System            :Windows95/98/2000/XP/Windows7

 

Front End                          :   Modelsim 6.3 for Debugging and Xilinx 14.3 for Synthesis and Hardware Implementation

 

This software’s where Verilog source code can be used for design implementation.

 

Learning Outcomes

  • Basics of Digital Electronics
  • VLSI design Flow
  • Introduction parallel filters
  • Writing Verilog code.
  • Introduction to fault tolerant parallel filters
  • Knowledge on error correction codes
  • Applications in real time

·         Xilinx tool for writing code, synthesis and simulation

·         Solution providing for real time problems

·         Project Development Skills:

o   Problem Analysis Skills

o   Problem Solving Skills

o   Logical Skills

o   Designing Skills

o   Testing Skills

o   Debugging Skills

o   Presentation Skills

o   Thesis Writing Skills

 

 

 

 

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