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Analysis of Co-channel Interference in Weak Field Area of High-speed Railway

机译:高速铁路弱场区域的共信道干扰分析

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Co-channel interference is a key performance indicator of railway digital mobile communication system (RDMCS). Based on an overall consideration of both small-scale attenuation and large-scale attenuation, this paper analyzes co-channel interference in two typical scenarios of weak field areas where repeaters are utilized. In small-scale attenuation, we consider time delay difference. If time delay difference of signals with same content is too long, signals may not be equalized and then become reciprocal interference. In large-scale attenuation, we calculate the power of co-channel signals through transmitting power and path loss. Then we simulate the carrier-to-interference ratio (C/I) of co-channel interference. According to the requirements of high-speed railway, this paper proposes some schemes of transmission equipments' location and distance to reduce the impact of co-channel interference. Because of some data and scenarios in this paper is from practical situation in China high-speed railway, these schemes are more coincidental with the reality, reasonable, practicability and useful for radio planning in new railway networks.
机译:共同信道干扰是铁路数字移动通信系统(RDMC)的关键性能指标。基于对小规模衰减和大规模衰减的总体考虑,本文分析了利用中继器的弱场区域的两个典型场景中的共信道干扰。在小规模衰减中,我们考虑时间延迟差异。如果具有相同内容的信号的时间延迟差太长,则信号可能不均衡,然后变为互易干扰。在大规模衰减中,我们通过传输功率和路径损耗来计算共信道信号的功率。然后我们模拟共信道干扰的载波到干扰比(C / I)。根据高速铁路的要求,本文提出了一些传输设备的位置和距离方案,以降低共信道干扰的影响。由于本文的一些数据和情景是来自中国高速铁路的实际情况,这些方案与新铁路网络中的无线电规划更加巧合,可与无线电规划有用。

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