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FPGA Implementation of Adaptive Digital Filter for Medical Application - Mahesh Dembrani - Bog

FPGA Implementation of Adaptive Digital Filter for Medical Applicationaf Mahesh Dembrani
Bag om FPGA Implementation of Adaptive Digital Filter for Medical Application

Biomedical Signals are such kind of signals which play a vital role in the analysis of the human health diagnosis. This Signal includes such as ECG Signal for analysis of heart rate, PCG signal for analysis of heart and blood, VAG signal for analysis of Knee Joint, EMG Signal for analysis of muscle fibers, EEG signal for analysis of brain activities. The paper analyzes the distributed arithmetic (DA) based Block LMS (BLMS) based on that we propose iteration of LUT sharing reduces the energy consumption and provides higher speed to detect the accurate ECG signal. The FPGA implementation is carried out on virtex board having 5 grade speed xc2vpx70-5ff1704. The result focuses on the low power and low memory is required for implementation which provides higher speed and accuracy.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9786139578344
  • Indbinding:
  • Paperback
  • Sideantal:
  • 52
  • Udgivet:
  • 23. marts 2018
  • Størrelse:
  • 150x4x220 mm.
  • Vægt:
  • 96 g.
  • 2-3 uger.
  • 9. december 2024
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Beskrivelse af FPGA Implementation of Adaptive Digital Filter for Medical Application

Biomedical Signals are such kind of signals which play a vital role in the analysis of the human health diagnosis. This Signal includes such as ECG Signal for analysis of heart rate, PCG signal for analysis of heart and blood, VAG signal for analysis of Knee Joint, EMG Signal for analysis of muscle fibers, EEG signal for analysis of brain activities. The paper analyzes the distributed arithmetic (DA) based Block LMS (BLMS) based on that we propose iteration of LUT sharing reduces the energy consumption and provides higher speed to detect the accurate ECG signal. The FPGA implementation is carried out on virtex board having 5 grade speed xc2vpx70-5ff1704. The result focuses on the low power and low memory is required for implementation which provides higher speed and accuracy.

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