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Performance simulations of a 2.4 GHz indoor angle of arrival system for multipath components

机译:用于多径组件的2.4 GHz室内到达角系统的性能仿真

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Multipath propagation is generally considered as an inconvenience in indoor radio frequency positioning systems, causing a degradation of localization accuracy. However, it is possible to exploit spatial information of reflected signals in a multipath assisted indoor positioning system, based on angle of arrival estimation. In order to assess the accuracy of the estimated angles and optimize system parameters, a simulation tool was developed. The tool simulates indoor line-of-sight signals and specular reflections of a 2.4 GHz signal, impinging on an antenna array. With this simulator, the performance of the MVDR, Beamscan, root MUSIC and ESPRIT algorithms for angle of arrival estimation is compared. Other investigated parameters include the position of the array in a square or rectangular room, the number of antennas, the number of signal decorrelation operations and the number of angles of arrival to be estimated. For each configuration, the spatial distribution of angular errors was evaluated, facilitating the design and dimensioning of an accurate indoor angle of arrival system.
机译:多径传播通常被认为是室内射频定位系统中的不便之处,从而导致定位精度降低。然而,有可能基于到达角估计在多径辅助室内定位系统中利用反射信号的空间信息。为了评估估计角度的准确性并优化系统参数,开发了一种仿真工具。该工具模拟撞击在天线阵列上的室内视线信号和2.4 GHz信号的镜面反射。使用此模拟器,可以比较MVDR,Beamscan,根MUSIC和ESPRIT算法用于到达角估计的性能。其他调查的参数包括阵列在方形或矩形房间中的位置,天线的数量,信号去相关操作的数量以及要估计的到达角度的数量。对于每种配置,都对角度误差的空间分布进行了评估,从而简化了精确的室内到达角系统的设计和尺寸设计。

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