Parallelized Particle Swarm Optimization on FPGA for Realtime Ballistic Target Tracking

Citations

WEB OF SCIENCE

8
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SCOPUS

10

초록

This paper addresses the problem of tracking a high-speed ballistic target in real time. Particle swarm optimization (PSO) can be a solution to overcome the motion of the ballistic target and the nonlinearity of the measurement model. However, in general, particle swarm optimization requires a great deal of computation time, so it is difficult to apply to realtime systems. In this paper, we propose a parallelized particle swarm optimization technique using field-programmable gate array (FPGA) to be accelerated for realtime ballistic target tracking. The realtime performance of the proposed method has been tested and analyzed on a well-known heterogeneous processing system with a field-programmable gate array. The proposed parallelized particle swarm optimization was successfully conducted on the heterogeneous processing system and produced similar tracking results. Also, compared to conventional particle swarm optimization, which is based on the only central processing unit, the computation time is significantly reduced by up to 3.89x.

키워드

ballistic target tracking; field-programmable gate array; particle swarm optimization; realtime system; DESIGN
제목
Parallelized Particle Swarm Optimization on FPGA for Realtime Ballistic Target Tracking
저자
Park, Juhyeon; Lee, Heoncheol; Kwon, Hyuck-Hoon; Hwang, Yeji; Choi, Wonseok
DOI
10.3390/s23208456
발행일
2023-10
유형
Article
저널명
Sensors
권
23
호
20