Localization and array shape estimation using software defined radio array testbed

Akinbiyi Akindoyin, Marc Willerton, A. Manikas
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引用次数: 12

Abstract

The emergence of software defined radio (SDR) aims to increase flexibility as well as reduce cost, size, weight and power (SWAP) inherent in traditional hardware radios. This paper is concerned with addressing issues associated with the formation of an array system from multiple SDR boards where each has an independent local oscillators (LO) in a multi-antenna system using representative examples such as localization and array shape estimation. In particular, practical experimental results are initially presented for estimating the unknown location of a single source using an SDR array of known array geometry. Furthermore, in the case that the SDR array geometry is unknown, a novel array shape estimation algorithm is proposed. The proposed algorithm estimates the antenna locations without requiring any external sources. This is achieved by allowing the array elements operate as transceivers.
利用软件定义的无线电阵列试验台进行定位和阵列形状估计
软件定义无线电(SDR)的出现旨在提高灵活性以及降低传统硬件无线电固有的成本、尺寸、重量和功率(SWAP)。本文通过定位和阵列形状估计等代表性示例,讨论了由多个SDR板组成阵列系统的相关问题,其中每个SDR板在多天线系统中具有独立的本振(LO)。具体而言,本文首先介绍了利用已知阵列几何形状的SDR阵列估计单个源未知位置的实际实验结果。此外,在SDR阵列几何形状未知的情况下,提出了一种新的阵列形状估计算法。该算法在不需要任何外部源的情况下估计天线位置。这是通过允许阵列元素作为收发器操作来实现的。
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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