互联微功率无线局部通信中全网感知技术的研究与应用

Guochang Li, Weiqiong Song, Huizhu Xian, Rui Li, Cheng Zhao, Yifei Li, Ning Ding
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引用次数: 0

摘要

随着配电网规模的快速发展和配电数据深度应用的稳步推进,进一步提高故障定位系统的准确性,提高配电网维修的服务水平和效率,解决低压用户配电网线路发生故障时难以实现故障定位的问题是一个重要的课题。国家电网电力信息采集系统的实际部署表明,本地通信技术是建立电力信息采集系统的关键技术。微功率无线通信技术具有稳定、可靠、实时性等优点,可以解决本地通信系统中“最后一公里”的接入问题,具有广阔的应用前景。介绍了一种基于全网感知技术的微功率无线通信故障定位优化方案。微功率无线全网感知技术利用会话式电力信息采集系统的通信网络,通过微功率无线网络感知节点的在线状态,反映节点的供电情况,实现对低压线路的实时监控,降低误报停电的概率,为故障定位提供技术支持。构建面向“互联网+”的未来智能电网演进的通信基础设施,构建智能配电网对电网优化管理和消费者服务的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research and Application of Whole Network Perception Technology in Interconnect Micro-power Wireless Local Communication
With the rapid development of size of distribution network and the steady progress of deep application of distribution data, it is an important subject to further improve the accuracy of fault location system, to improve the service level and efficiency for repairing the distribution network and to solve the problem that it is difficult to realize the fault location when power failure occurs in lines of the distribution network for low-voltage consumers. The practical deployment of national grid electricity information acquisition system indicates that, local communication technology is the key technology for establishing the electricity information acquisition system. Micro-power wireless communication technology can solve the access problem of "Last Mile" in the local communication system due to advantages of stability, reliability and real-time, thus having a broad application prospect. This article introduces an optimization solution for fault location based on the whole network perception technology in micro-power wireless communication. The micro-power wireless whole network perception technology perceives on-line states of nodes via the micro-power wireless network to reflect power supply condition of the nodes by utilizing a communication network of the conversational electricity information acquisition system, such that the real-time monitor of low-voltage lines can be realized, the probability of mistakenly reporting the power failure can be reduced, and a technical support can be provided for fault location, communication infrastructures can be established for evolution to the future intelligent power grid orientated to "Internet +", and the effect of intelligent distribution network establishment in optimizing management of the power grid and service for consumers can be presented.
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