Proposed Title :
FPGA Implementation of Low-Power Y Cb and Cr based Approximate Multiplication With Configurable Error Recovery
Improvement of this Project:
To developed Image Multiplication with technique of both luminance and chrominance (Y Cb Cr).
To developed AM1 and AM2 Multiplication and compared all the terms of area, delay and power.
Software implementation:
- Modelsim
- Xilinx
Disadvantages:
- Longer delay
- High power consumption
- Low accuracy
- Only luminance multiplication is achieved ( Gray Scale )
Proposed System:
In Digital Signal Processing (DSP), which performance enhanced with low accuracy in application of approximate circuits. In existing system, which AM1 and AM2 are described for error recovery, which error has taken from approximate adder and then multiplexing with Approximate results. approximate multiplier with low power and small critical path is delivered with high performance DSP applications. An approximate adder is developed in existing technology of approximate Multipliers designed only in Luminance (Y) concept and achieved with image sharpening and smoothing. In proposed system, here present AM1 Multiplication and AM2 Multiplication and implemented both of the things in Image processing as multiplication with Y ( Luminance) and Chrominance (Cb, Cr) technique. These proposed system is coded by VHDL with luminance to luminance multiplication and chrominance to chrominance multiplication in this sampling is efficiently multiplied and proved in comparisons. A result of PSNR and SSIM is achieved by AM1 and AM2 Image Multiplication and this design proved synthesized in Xilinx FPGA XC5VLX330-2FF1760 and proved comparison in terms of power, area and delay.
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Low-Power Approximate Unsigned Multipliers with Configurable Error Recovery
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