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A Novel Wireless Local Positioning System via a Merger of DS-CDMA and Beamforming: Probability-of-Detection Performance Analysis Under Array Perturbations

机译:通过DS-CDMA和波束赋形的合并的新型无线本地定位系统:阵列扰动下的探测概率性能分析

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This paper investigates the probability-of-detection (POD) performance of a novel wireless local positioning system (WLPS) realized via direct sequence code division multiple access (DS-CDMA) and beamforming techniques. The proposed WLPS has unique signaling schemes that discriminate it from the traditional wireless systems and allows the WLPS to have many civilian and military applications. The WLPS consists of two main parts: 1) the detecting unit, a base station carried by a mobile unit defined as dynamic base station (DBS), and 2) the being detected unit, a transponder (TRX) that is mounted on the targets, each assigned a unique identification code. Each DBS should be capable of detecting and locating all available TRXs in its coverage area. As a result, the main complexity of this system is focused at the DBS receiver. In this paper, we introduce WLPS structure, and both theoretically and numerically compute, and compare the POD performance of the DBS receiver realized by a merger of DS-CDMA and antenna arrays. We also analyze and simulate the performance of this system under perturbations in the DBS antenna array vector. The simulations are particularly performed for vehicular collision avoidance applications
机译:本文研究了通过直接序列码分多址(DS-CDMA)和波束成形技术实现的新型无线本地定位系统(WLPS)的检测概率(POD)性能。提议的WLPS具有独特的信令方案,该方案将其与传统无线系统区分开来,并使WLPS具有许多民用和军事应用。 WLPS由两个主要部分组成:1)检测单元,由定义为动态基站(DBS)的移动单元承载的基站,以及2)被检测单元,安装在目标上的应答器(TRX) ,每个分配了唯一的识别码。每个DBS应该能够检测并找到其覆盖区域中所有可用的TRX。结果,该系统的主要复杂性集中在DBS接收器上。在本文中,我们介绍了WLPS结构,并在理论和数值上进行了计算,并比较了通过DS-CDMA和天线阵列的合并实现的DBS接收机的POD性能。我们还分析和模拟了该系统在DBS天线阵列矢量扰动下的性能。该仿真特别针对车辆防撞应用而执行

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