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Time Stability of Untethered Electronic Switched MIMO Millimeter-Wave Channel Sounders

机译:不受限制的电子交换MIMO毫米波频道发声器的时间稳定性

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Untethered channel sounders are used to measure mobile radio propagation channels. As high data rate, millimeter-wave and multiple-input multiple output (MIMO) are considered in the next generation communications systems, knowledge of the propagation channel needs to be studied in high accuracy. Measuring time stability of the clocks in both transmitter and receiver is essential when characterizing relative delay between multipath components (MPCs), absolute delay, angle of arrival (AoA) and angle of departure (AoD) of MPCs. This paper describes timing circuit design of untethered electronic switched MIMO millimeter-wave channel sounders, proposes practical method to remove a constant initial time error, and experimentally estimates time stability of the channel sounders. Time stability is classified in three categories: short-term (in order of microseconds) that impacts relative delay, AoA and AoD; medium-term (in order of minutes) that impacts absolute delay; and long-term stability (in order of days) that can be calibrated. This is the first time to apply standard parameters for measuring clock stability, such as timing Allan deviation (TDEV) and time interval error (TIE), to channel sounding and modeling. Novel methods are developed for measuring jitter and short-term noise. It was found that TDEV for short-term measurements was less than 1 ps and the medium-term timing errors due to clock noise could be maintained at 0.4 ns/min.
机译:不受限制的通道探测器用于测量移动无线电传播信道。随着高数据速率,在下一代通信系统中考虑毫米波和多输入多输出(MIMO),需要高精度地研究传播信道的知识。当在MPCS的多径分量(MPCS),绝对延迟,到达角(AOA角度(AOA)之间的相对延迟表征多径分量(MPC),绝对延迟角度(AOA角度)和偏离角度(AOD)的相对延迟时,发送器和接收器中的时钟的时间稳定性是必不可少的。本文介绍了不可阻止的电子交换MIMO毫米波频道发声器的定时电路设计,提出了去除恒定初始时间误差的实用方法,并通过实验估计通道发声器的时间稳定性。时间稳定性分为三类:短期(按微秒顺序),影响相对延迟,AOA和AOD;影响绝对延迟的中期(按数分钟);和可以校准的长期稳定性(按顺序)。这是第一次应用用于测量时钟稳定性的标准参数,例如定时allan偏差(TDEV)和时间间隔错误(TIE),以通信和建模。开发了用于测量抖动和短期噪声的新型方法。结果发现,用于短期测量的TDEV小于1 ps,并且由于时钟噪声引起的中期定时误差可以保持在0.4ns / min。

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