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Design and calibration of a double-directional 60 GHz channel sounder for multipath component tracking

Ruoyu Sun, Peter B. Papazian, Jelena Senic, Yeh Lo, Jae‐Kark Choi, Kate A. Remley, Camillo Gentile

发表年份
2017
引用次数
64

摘要

The 60 GHz band is being considered for many high-bandwidth wireless applications. To support standards development for these applications, NIST has developed an untethered 60 GHz, 8×16 MIMO channel sounder. It employs a pseudorandom bit sequence with a bandwidth of 4 GHz. The sounder can precisely measure radio propagation channel characteristics such as path loss, small-scale fading, delay dispersion, absolute delay, angle-of-arrival (AoA), angle-of-departure (AoD), and Doppler power spectrum. Its ability to measure the time dynamics of the millimeter-wave radio channel, when untethered and in motion, is unique. It employs electronically-switched MIMO antenna arrays, a robot for moving measurements and an automated one-dimensional positioner for precision measurements at fixed locations. Sounder performance is improved by use of pre-distortion filters and precision calibration of the RF and timing systems. Data showing initial AoD and AoA estimation error are presented along with initial test results for ground-plane reflection.

关键词

Multipath propagationDelay spreadAngle of arrivalBandwidth (computing)Computer scienceElectronic engineeringPath lossFadingMIMOPower delay profile

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