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Radio-Channel Characterization of Smart Grid Substations in the 2.4-GHz ISM Band

机译:2.4 GHz ISM频段中智能电网变电站的无线电信道表征

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摘要

The smart grid (SG) represents the present and the future of electric power grids. Wireless networks (WNs) are a key technology for this updating process, empowering electric networks to be easily managed in a flexible and cost-effective way. However, as with any wireless technology and especially in a harsh multipath environment such as the SG, reckoning with an extensive channel characterization is crucial. This paper presents an exhaustive characterization of two representative scenarios, both in the transport and distribution segment of an SG: a 400-kV outdoor substation and a main power room. The 2.4-GHz ISM band—in which most wireless communication technologies applied to SG operate—is examined in depth to characterize the radio-propagation phenomena. Large and small-scale fading, RMS delay, coherence bandwidth, and electromagnetic interferences are studied under different line-of-sight, polarizations, and frequency conditions to derive empirical models allowing to estimate the aforementioned parameters in other SGs of a similar nature. Finally, to further evaluate and compare our channel characterization, a WN was simulated in a substation to examine the channel modeling impact on its suitable design and operation.
机译:智能电网(SG)代表了当前和未来的电网。无线网络(WN)是此更新过程的关键技术,使电力网络能够以灵活且经济高效的方式轻松进行管理。但是,与任何无线技术一样,尤其是在恶劣的多路径环境(例如SG)中,考虑广泛的信道特性至关重要。本文对SG的运输和配电领域中的两种代表性场景进行了详尽的描述:400 kV户外变电站和主配电室。深入研究了应用于SG的大多数无线通信技术在其中运行的2.4 GHz ISM频段,以表征无线电传播现象。在不同的视线,极化和频率条件下研究了大型和小型衰落,RMS延迟,相干带宽和电磁干扰,以得出经验模型,从而可以估计其他类似性质的SG中的参数。最后,为了进一步评估和比较我们的信道特性,在变电站中模拟了WN,以检查信道建模对其合适的设计和操作的影响。

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