利用改进的二维LAD ACC算法对宽带认知PLC中的无线信号进行检测

R. Vuohtoniemi, J. Vartiainen, Juha-Pekka Mäkelä, J. Iinatti
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引用次数: 2

摘要

为了满足电力线通信(PLC)日益增长的容量要求,有了新的需求。在PLC网络中实现更高数据速率的一种方法是在更高的频率上运行并增加使用的带宽。在未来,增加的PLC频率范围可以与几个无线通信系统重叠,导致这些传输的干扰,反之亦然。通常使用的静态陷波导致频谱利用效率低下,因为在给定地点和给定时间,只有一部分频率范围可以被其他无线系统占用。有些无线信号,比如调频信号,间隔非常近。在实践中,利用这些窄带未占用的频段是不可能的。在这种情况下,我们可以聚类紧密间隔的信号。在为PLC定义可用频带之前,还必须考虑检测到的无线信号周围的保护频带。在本文中,我们使用二维LAD ACC算法来检测和聚类干扰信号。我们还进一步开发了算法,以便在聚类后添加保护带并在必要时执行重新聚类。在80 ~ 200mhz的频率范围内,通过计算和频谱分析仪测量结果对改进的二维LAD ACC算法的性能进行了分析。结果表明,该方法对连续和非连续无线信号的检测和聚类效果良好,为plc网络中频谱的巧妙利用提供了手段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of wireless signals in broadband cognitive PLC using the modified 2-D LAD ACC algorithm
There is a need to fulfill the growing capacity requirements of power line communication (PLC). One way to achieve higher data rates in PLC networks is to operate at higher frequencies and increase the used bandwidth. In the future, the increased PLC frequency range can overlap with several wireless communications systems resulting in interference for these transmissions and vice versa. Commonly used static notching results in inefficient spectrum utilization as in a given place and at a given time only a part of the frequency range may be occupied by other wireless systems. Some wireless signals like FM signals are very closely spaced. In practice it is impossible to utilize these narrowband unoccupied frequency bands. In this case we can cluster closely spaced signals. Guard bands around detected wireless signals must also be taken into account before defining usable frequency bands for PLC. In this paper, we use the 2-D LAD ACC algorithm to detect and cluster interfering signals. We also further develop the algorithm so that after clustering guard bands are added and reclustering, if necessary, is executed. The performance of this modified 2-D LAD ACC algorithm is analyzed using calculations and spectrum analyzer measurement results obtained from in-office PLC network in the frequency range 80-200 MHz. The results verify that the proposed method performs well by detecting and clustering continuous and non-continuous wireless signals and providing means for clever spectrum utilization in PLC-network.
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