Efficient and Accurate CORDIC Pipelined Architecture Chip Design Based on Binomial Approximation for Biped Robot

Recently, much research has focused on the design of biped robots with stable and smooth walking ability, identical to human beings, and thus, in the coming years, biped robots will accomplish rescue or exploration tasks in challenging environments. To achieve this goal, one of the important problem...

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Main Authors: Chung, Rih-Lung, Hsueh, Yen, Chen, Shih-Lun, Abu, Patricia Angela R
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Published: Archīum Ateneo 2022
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Online Access:https://archium.ateneo.edu/discs-faculty-pubs/340
https://archium.ateneo.edu/cgi/viewcontent.cgi?article=1340&context=discs-faculty-pubs
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spelling ph-ateneo-arc.discs-faculty-pubs-13402022-12-02T06:28:28Z Efficient and Accurate CORDIC Pipelined Architecture Chip Design Based on Binomial Approximation for Biped Robot Chung, Rih-Lung Hsueh, Yen Chen, Shih-Lun Abu, Patricia Angela R Recently, much research has focused on the design of biped robots with stable and smooth walking ability, identical to human beings, and thus, in the coming years, biped robots will accomplish rescue or exploration tasks in challenging environments. To achieve this goal, one of the important problems is to design a chip for real-time calculation of moving length and rotation angle of the biped robot. This paper presents an efficient and accurate coordinate rotation digital computer (CORDIC)-based efficient chip design to calculate the moving length and rotation angle for each step of the biped robot. In a previous work, the hardware cost of the accurate CORDIC-based algorithm of biped robots was primarily limited by the scale-factor architecture. To solve this problem, a binomial approximation was carefully employed for computing the scale-factor. In doing so, the CORDIC-based architecture can achieve similar accuracy but with fewer iterations, thus reducing hardware cost. Hence, incorporating CORDIC-based architecture with binomial approximation, pipelined architecture, and hardware sharing machines, this paper proposes a novel efficient and accurate CORDIC-based chip design by using an iterative pipelining architecture for biped robots. In this design, only low-complexity shift and add operators were used for realizing efficient hardware architecture and achieving the real-time computation of lengths and angles for biped robots. Compared with current designs, this work reduced hardware cost by 7.2%, decreased average errors by 94.5%, and improved average executing performance by 31.5%, when computing ten angles of biped robots. 2022-01-01T08:00:00Z text application/pdf https://archium.ateneo.edu/discs-faculty-pubs/340 https://archium.ateneo.edu/cgi/viewcontent.cgi?article=1340&context=discs-faculty-pubs Department of Information Systems & Computer Science Faculty Publications Archīum Ateneo biped robots binomial approximation coordinate rotation digital computer (CORDIC) field programmable gate array (FPGA) inverse kinematics pipeline Computer Engineering Engineering Robotics
institution Ateneo De Manila University
building Ateneo De Manila University Library
continent Asia
country Philippines
Philippines
content_provider Ateneo De Manila University Library
collection archium.Ateneo Institutional Repository
topic biped robots
binomial approximation
coordinate rotation digital computer (CORDIC)
field programmable gate array (FPGA)
inverse kinematics
pipeline
Computer Engineering
Engineering
Robotics
spellingShingle biped robots
binomial approximation
coordinate rotation digital computer (CORDIC)
field programmable gate array (FPGA)
inverse kinematics
pipeline
Computer Engineering
Engineering
Robotics
Chung, Rih-Lung
Hsueh, Yen
Chen, Shih-Lun
Abu, Patricia Angela R
Efficient and Accurate CORDIC Pipelined Architecture Chip Design Based on Binomial Approximation for Biped Robot
description Recently, much research has focused on the design of biped robots with stable and smooth walking ability, identical to human beings, and thus, in the coming years, biped robots will accomplish rescue or exploration tasks in challenging environments. To achieve this goal, one of the important problems is to design a chip for real-time calculation of moving length and rotation angle of the biped robot. This paper presents an efficient and accurate coordinate rotation digital computer (CORDIC)-based efficient chip design to calculate the moving length and rotation angle for each step of the biped robot. In a previous work, the hardware cost of the accurate CORDIC-based algorithm of biped robots was primarily limited by the scale-factor architecture. To solve this problem, a binomial approximation was carefully employed for computing the scale-factor. In doing so, the CORDIC-based architecture can achieve similar accuracy but with fewer iterations, thus reducing hardware cost. Hence, incorporating CORDIC-based architecture with binomial approximation, pipelined architecture, and hardware sharing machines, this paper proposes a novel efficient and accurate CORDIC-based chip design by using an iterative pipelining architecture for biped robots. In this design, only low-complexity shift and add operators were used for realizing efficient hardware architecture and achieving the real-time computation of lengths and angles for biped robots. Compared with current designs, this work reduced hardware cost by 7.2%, decreased average errors by 94.5%, and improved average executing performance by 31.5%, when computing ten angles of biped robots.
format text
author Chung, Rih-Lung
Hsueh, Yen
Chen, Shih-Lun
Abu, Patricia Angela R
author_facet Chung, Rih-Lung
Hsueh, Yen
Chen, Shih-Lun
Abu, Patricia Angela R
author_sort Chung, Rih-Lung
title Efficient and Accurate CORDIC Pipelined Architecture Chip Design Based on Binomial Approximation for Biped Robot
title_short Efficient and Accurate CORDIC Pipelined Architecture Chip Design Based on Binomial Approximation for Biped Robot
title_full Efficient and Accurate CORDIC Pipelined Architecture Chip Design Based on Binomial Approximation for Biped Robot
title_fullStr Efficient and Accurate CORDIC Pipelined Architecture Chip Design Based on Binomial Approximation for Biped Robot
title_full_unstemmed Efficient and Accurate CORDIC Pipelined Architecture Chip Design Based on Binomial Approximation for Biped Robot
title_sort efficient and accurate cordic pipelined architecture chip design based on binomial approximation for biped robot
publisher Archīum Ateneo
publishDate 2022
url https://archium.ateneo.edu/discs-faculty-pubs/340
https://archium.ateneo.edu/cgi/viewcontent.cgi?article=1340&context=discs-faculty-pubs
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