Turkish Journal of Computer and Mathematics Education
Journal license

Journal

Turkish Journal of Computer and Mathematics Education


Volume
& Issue

Volume 15, Issue 1


Published
on


Pages

212-217


DOI

Article

Implementation of FIR Filters through Inner product Units and Parallel Accumulations


Authors

P.v. Krishnarao Affiliation:
Department of Electronics and Communication Engineering, Geethanjali Institute of Science and Technology, Nellore
, Vandana Dasari Affiliation:
Department of Electronics and Communication Engineering, Geethanjali Institute of Science and Technology, Nellore
, Venkata Manasa Bokkisam Affiliation:
Department of Electronics and Communication Engineering, Geethanjali Institute of Science and Technology, Nellore
, Pavani Dasari Affiliation:
Department of Electronics and Communication Engineering, Geethanjali Institute of Science and Technology, Nellore
and Pavani Harshitha Guntumadugu Affiliation:
Department of Electronics and Communication Engineering, Geethanjali Institute of Science and Technology, Nellore


Abstract

Finite Impulse Response (FIR) filters are pivotal in digital signal processing, finding applications in diverse fields like audio processing, telecommunications, and biomedical signal analysis. This work presents an enhanced implementation methodology for FIR filters utilizing inner product computation and parallel accumulations. In the existing, FIR filters are typically implemented using convolution techniques, basic adders, and multipliers, which involve sequential processing and intensive computational resources. This method often leads to latency issues and limits real-time applications. Moreover, traditional implementations suffer from inefficiencies in utilizing hardware resources optimally, leading to suboptimal performance. The proposed methodology overcomes these limitations by leveraging inner product computations and parallel accumulation techniques. By exploiting inherent parallelism in the filtering process, the proposed method significantly reduces latency and enhances throughput.


Keywords

Finite Impulse Response Filters, Parallel Adders, Parallel Multipliers, Sequential processing


Citation

Krishnarao, P., Dasari, V., Bokkisam, V. M., Dasari, P., & Guntumadugu, P. H. (2024). Implementation of FIR filters through inner product units and parallel accumulations. Turkish Journal of Computer and Mathematics Education, 15(1), 212–217.

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