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A Two-Antenna Single RF Front-End DOA Estimation System for Wireless Communications Signals

机译:用于无线通信信号的两天线单射频前端DOA估计系统

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Both adaptive beamforming methods and interference management systems improve the capacity of wireless communications systems, however they may require direction of arrival (DOA) information of signals. On the other hand, most of the DOA estimation systems suffer from computational complexity, high costs, and bulky size which prevents mobility. Antenna array inflexibility of DOA estimation systems also prevents prevalence over the whole wireless spectrum. In this paper, a solution to these problems which benefits from the advantages of switched antenna systems along with the time-variant sequential sampling process is proposed: a two-antenna, single radio-frequency (RF) front-end DOA estimation system which extends the measurements to different locations by shifting the antenna tuple together as a single entity. The system adjusts the antenna spacing for adaptive spectrum coverage. An extension to total measurement time is introduced, however, when compared to DOA estimation systems which have separate RF front-end for each antenna, the system has moderate complexity and size. A measurement setup is developed and performance of the proposed system is provided for extensive set of wireless standards and measurement parameters. Multiple signal classification is selected as DOA method for the proposed system and the DOA estimation performance is compared with the pseudo-Doppler system.
机译:自适应波束形成方法和干扰管理系统都提高了无线通信系统的容量,但是它们可能需要信号的到达方向(DOA)信息。另一方面,大多数DOA估计系统都存在计算复杂性,高成本和体积庞大(妨碍移动性)的问题。 DOA估计系统的天线阵列不灵活性还可以防止在整个无线频谱中普及。本文提出了一种解决这些问题的方法,该方法得益于开关天线系统的优势以及时变顺序采样过程:一种扩展了两天线,单射频(RF)前端DOA估计系统通过将天线元组作为一个整体移动到不同位置来进行测量。系统调整天线间隔以适应频谱覆盖。引入了总测量时间的扩展,但是,与DOA估计系统(每个天线具有独立的RF前端)相比,该系统具有适度的复杂性和大小。开发了测量设置,并为广泛的无线标准和测量参数集提供了所提出系统的性能。选择多信号分类作为该系统的DOA方法,并将DOA估计性能与伪多普勒系统进行比较。

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