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Measurement and cognitive detection method of broadcast radio stations in distribution networks

机译:配电网中广播电台的测量与认知检测方法

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Power Line Communication (PLC) plays a major role in smart grid applications. However, when the frequencies of above 500 kHz are used, mutual interferences between the PLC access system and Medium Wave (MW)/Short Wave (SW) broadcast radios may occur. To cope with this issue, one of the promising solutions is cognitive PLC. In this paper, MW/SW broadcast radio frequency allocation and their usage conditions in China are reviewed first, to get experience with their potential frequency collisions with PLC. Then the results of a measurement campaign performed in the typical Low Voltage (LV)/Medium Voltage (MV) distribution networks in China are shown and analyzed in detail. Besides individual measurement snapshots, more statistical results are investigated to reveal the variation of the radio interference level with different measurement places and times. All these efforts contribute to obtaining the Reception Factor (RF) of the measured distribution networks, in conjunction with the narrow-band noise peak level over the power line noise floor. On that basis, a threshold-based cognitive detection method is proposed to identify radio stations on the distribution lines. Finally, the paper ends with brief discussions of the impact on PLC throughput when dynamic notching is employed.
机译:电力线通信(PLC)在智能电网应用中起着重要作用。但是,当使用高于500 kHz的频率时,PLC访问系统和中波(MW)/短波(SW)广播无线电之间可能会发生相互干扰。为了解决这个问题,认知PLC是有前途的解决方案之一。本文首先回顾了MW / SW广播无线电频率分配及其在中国的使用条件,以获取它们与PLC潜在的频率冲突的经验。然后显示并详细分析了在中国典型的低压(LV)/中压(MV)配电网络中进行的测量活动的结果。除了单独的测量快照外,还要研究更多的统计结果,以揭示无线电干扰电平随测量位置和时间的变化。所有这些努力与获得电力线本底噪声的窄带噪声峰值水平相结合,有助于获得被测配电网络的接收因子(RF)。在此基础上,提出了一种基于阈值的认知检测方法来识别配电线路上的无线电台。最后,本文最后简要讨论了采用动态刻槽对PLC吞吐量的影响。

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