Reduced-rank space-time adaptive processing for navigation receivers based on QR decomposition and approximations of basis functions

Hui Xiao, R. D. Lamare
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引用次数: 1

Abstract

This paper presents a novel reduced-rank space-time adaptive processing (STAP) algorithm for GPS receivers with low computational complexity for protection against the multipath and jamming interferences. The proposed STAP algorithm is based on the least-squares (LS) criterion. The main novelties are the design of the projection matrix based on a set of basis-functions and the derivation of a QR decomposition based reduced-rank recursive LS (QRD-RLS) algorithm for practical implementations. The proposed scheme works on an instantaneous basis, i.e. at each time instant, we select the most suitable set of basis functions to minimize the squared error. Simulation results in a GPS system show that, compared to existing reduced-rank and full-rank algorithms, the proposed algorithm has a much lower computational complexity, and a remarkably better performance for interference suppression and for combating the numerical instability encountered in finite wordlength implementations.
基于QR分解和基函数逼近的导航接收机降阶空时自适应处理
本文提出了一种新的低计算复杂度的GPS接收机降阶空时自适应处理(STAP)算法,以防止多径干扰和干扰。提出的STAP算法基于最小二乘准则。主要的创新点是基于一组基函数的投影矩阵的设计和基于QR分解的降阶递归LS (QRD-RLS)算法的推导。该方法是在瞬时基础上工作的,即在每个时间瞬间,我们选择最合适的基函数集来最小化平方误差。在GPS系统中的仿真结果表明,与现有的降秩和全秩算法相比,该算法具有更低的计算复杂度,并且在抑制干扰和对抗有限字长实现中遇到的数值不稳定性方面具有显著的性能。
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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