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LCMV Beamforming for a Novel Wireless Local Positioning System: Nonstationarity and Cyclostationarity Analysis

机译:用于新型无线本地定位系统的LCMV波束成形:非平稳性和循环平稳性分析

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This paper investigates the implementation of a novel wireless local positioning system (WLPS). WLPS main components are: (a) a dynamic base station (DBS) and (b) a transponder, both mounted on mobiles. The DBS periodically transmits ID request signals. As soon as the transponder detects the ID request signal, it sends its ID (a signal with a limited duration) back to the DBS. Hence, the DBS receives noncontinuous signals periodically transmitted by the transponder. The noncontinuous nature of the WLPS leads to nonstationary received signals at the DBS receiver, while the periodic signal structure leads to the fact that the DBS received signal is also cyclostationary. This work discusses the implementation of linear constrained minimum variance (LCMV) beamforming at the DBS receiver. We demonstrate that the nonstationarity of the received signal causes the sample covariance to be an inaccurate estimate of the true signal covariance. The errors in this covariance estimate limit the applicability of LCMV beamforming. A modified covariance matrix estimator, which exploits the cyclostationarity property of WLPS system is introduced to solve the nonstationarity problem. The cyclostationarity property is discussed in detail theoretically and via simulations. It is shown that the modified covariance matrix estimator significantly improves the DBS performance. The proposed technique can be applied to periodic-sense signaling structures such as the WLPS, RFID, and reactive sensor networks.
机译:本文研究了新型无线本地定位系统(WLPS)的实现。 WLPS的主要组件是:(a)动态基站(DBS)和(b)应答器,均安装在移动设备上。 DBS周期性地发送ID请求信号。应答器检测到ID请求信号后,便立即将其ID(持续时间有限的信号)发送回DBS。因此,DBS接收由应答器周期性发送的非连续信号。 WLPS的非连续性导致在DBS接收器处接收到不稳定的信号,而周期性信号结构导致DBS接收信号也处于循环静止的事实。这项工作讨论了在DBS接收机上线性约束最小方差(LCMV)波束成形的实现。我们证明接收信号的非平稳性导致样本协方差成为真实信号协方差的不准确估计。该协方差估计中的误差限制了LCMV波束成形的适用性。为了解决非平稳性问题,提出了一种利用WLPS系统的循环平稳性的改进协方差矩阵估计器。理论上和通过模拟详细讨论了循环平稳性。结果表明,改进的协方差矩阵估计器显着提高了DBS性能。所提出的技术可以应用于周期性感知的信令结构,例如WLPS,RFID和反应性传感器网络。

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