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LCMV Beamforming for a Novel Wireless Local Positioning System: A Stationarity Analysis

机译:用于新型无线本地定位系统的LCMV波束成形:平稳性分析

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In this paper, we discuss the implementation of Linear Constrained Minimum Variance (LCMV) beamforming (BF) for a novel Wireless Local Position System (WLPS). WLPS main components are: (a) a dynamic base station (DBS), and (b) a transponder (TRX), both mounted on mobiles. WLPS might be considered as a node in a Mobile Adhoc NETwork (MANET). Each TRX is assigned an identification (ID) code. DBS transmits periodic short bursts of energy which contains an ID request (IDR) signal. The TRX transmits back its ID code (a signal with a limited duration) to the DBS as soon as it detects the IDR signal. Hence, the DBS receives non-continuous signals transmitted by TRX. In this work, we assume asynchronous Direct-Sequence Code Division Multiple Access (DS-CDMA) transmission from the TRX with antenna array/LCMV BF mounted at the DBS, and we discuss the implementation of the observed signal covariance matrix for LCMV BF. In LCMV BF, the observed covariance matrix should be estimated. Usually sample covariance matrix (SCM) is used to estimate this covariance matrix assuming a stationary model for the observed data which is the case in many communication systems. However, due to the non-stationary behavior of the received signal in WLPS systems, SCM does not lead to a high WLPS performance compared to even a conventional beamformer. A modified covariance matrix estimation method which utilizes the cyclostationarity property of WLPS system is introduced as a solution to this problem. It is shown that this method leads to a significant improvement in the WLPS performance.
机译:在本文中,我们讨论了一种新型无线局域定位系统(WLPS)的线性约束最小方差(LCMV)波束成形(BF)的实现。 WLPS的主要组件是:(a)动态基站(DBS)和(b)应答器(TRX),两者都安装在移动设备上。 WLPS可能被视为移动自组织网络(MANET)中的一个节点。每个TRX均分配有一个标识(ID)代码。 DBS传输包含ID请求(IDR)信号的周期性短脉冲能量。 TRX一旦检测到IDR信号,便将其ID码(持续时间有限的信号)发送回DBS。因此,DBS接收TRX发送的非连续信号。在这项工作中,我们假设从TRX的异步直接序列码分多址(DS-CDMA)传输在DBS上安装了天线阵列/ LCMV BF,并且我们讨论了LCMV BF的观测信号协方差矩阵的实现。在LCMV BF中,应估计观察到的协方差矩阵。通常假设样本的协方差矩阵(SCM)被用于估计此协方差矩阵,假设观测数据的模型是平稳的,这在许多通信系统中都是如此。但是,由于WLPS系统中接收信号的非平稳行为,即使与传统的波束形成器相比,SCM也不会导致较高的WLPS性能。为此,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方法。结果表明,该方法可显着提高WLPS性能。

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