An EHW architecture for real-time GPS attitude determination based on parallel genetic algorithm

Jiangning Xu, T. Arslan
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引用次数: 24

Abstract

The paper describes a parallel genetic algorithm for the VLSI implementation of real-time GPS attitude determination systems. The genetic algorithm is based on a fine-grained model and utilises AFM (Ambiguity Function Method) for GPS attitude determination. The paper describes various implementation choices for the genetic algorithm in order to achieve both functionality and practical performance constraints such as speed, compactness and scalability. Simulation results using GPS carrier phase experimental data show that, in addition to low hardware complexity, our final genetic algorithm architecture achieves a linear speed-up with the number of processors utilised in the target VLSI chip.
基于并行遗传算法的GPS实时姿态确定EHW体系结构
本文介绍了一种用于实时GPS测姿系统VLSI实现的并行遗传算法。该遗传算法基于细粒度模型,利用模糊函数法(AFM)确定GPS姿态。本文描述了遗传算法的各种实现选择,以实现功能和实际性能约束,如速度,紧凑性和可扩展性。利用GPS载波相位实验数据的仿真结果表明,除了低硬件复杂度外,我们最终的遗传算法架构还可以随着目标VLSI芯片中使用的处理器数量的增加而实现线性加速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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