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CATR Reflector Measurement System with Multiple Reflectors for Multiple Angles of Arrival in Millimeter Wave Frequency Bands

机译:具有多个反射器的Catr反射器测量系统,用于多个到达毫米波频带的角度

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This paper presents a novel method using multiple combined compact antenna test ranges (CATR) to perform Radio Resource Management (RRM) measurements required for 5G devices capable of beam-forming in the millimeter wave frequency range. Four reflectors are arranged on a semi-circle centered at the device under test (DUT) which can be rotated by a positioner. This novel CATR system aims at creating four planar waves intersecting at the DUT location, thereby realizing five possible sets Angle of Arrival (AoA) pairs. These AoAs simulate spatially distributed base-stations, so as to evaluate 5G devices capabilities for execution of mobility procedures and radio link monitoring. Simulations and measurements, performed for both non-signaling and signaling scenarios, demonstrate the applicability of the approach for RRM measurements. Benefits in quiet zone size are highlighted, objectively establishing the superiority of the technique compared to traditional multi-probe setups without reflectors.
机译:本文介绍了一种新的方法,该方法使用多个组合的光学天线测试范围(CATR)来执行能够在毫米波频率范围内形成波束的装置所需的无线电资源管理(RRM)测量。四个反射器布置在以测试(DUT)的设备为中心的半圆上,其可以由定位器旋转。这种新型CATR系统旨在在DUT位置创建四个平面波,从而实现五个可能的到达角度(AOA)对。这些AOAS模拟空间分布式基站,以便评估5G设备用于执行移动性程序和无线电链路监视的功能。对非信令和信令场景执行的模拟和测量,证明了RRM测量方法的适用性。与传统的多探针设置相比,突出显示安静区域大小的优势,与没有反射器的传统多探针设置相比,该技术的优越性。

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