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Optimal placement of WiMAX antennas for Active Distribution Network Planning

机译:WiMAX天线的最佳布局,用于主动配电网络规划

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The communication system is an essential part of the modern distribution systems. The performances of active distribution systems and smart grid are very much reliant on the availability and resiliency of the communication medium. For these reasons, the communication system should be optimally planned in order to achieve a predetermined level of Quality of Service for a specific distribution network in a given geographic area. In this paper, an evolutionary multi-objective algorithm that is capable to find the optimal number, position and connection of WiMax antennas is proposed. The procedure, for the wireless operation of active distribution networks, is capable to find an optimal compromise between the capital expenditures for the communication system and the reliability of the active distribution system. The weather conditions, the major cause of signal attenuation besides the distance, as well as the availability of radio facilities are taken into consideration by the optimization algorithm with an original adaptation of international technical standards. The algorithm can be used by planners involved in the definition of short-medium term development plans of distribution systems towards smart grids and that are seeking how to implement intelligence and control in the system by maximizing the worth of money and without building costly infrastructures for the communication system. This work is the first step for the joint planning of both communication and power systems that, as recommended by CIGRE WG C6.11, is absolutely necessary to optimize investments towards the modern distribution business. The results of the application to a small real world case study confirmed the validity of the proposed approach.
机译:通信系统是现代配电系统的重要组成部分。有源配电系统和智能电网的性能非常依赖于通信介质的可用性和弹性。由于这些原因,应该对通信系统进行最佳规划,以便为给定地理区域中的特定配电网络实现预定水平的服务质量。本文提出了一种能够找到WiMax天线的最佳数量,位置和连接的进化多目标算法。对于有源分配网络的无线操作,该过程能够在通信系统的资本支出和有源分配系统的可靠性之间找到最佳折衷方案。优化算法考虑了天气条件,除距离以外信号衰减的主要原因以及无线电设备的可用性,该算法最初采用了国际技术标准。计划者可以使用该算法来制定面向智能电网的配电系统的短期开发计划,他们正在寻求如何通过最大限度地利用资金来实现系统中的智能和控制,而又无需为电网建设昂贵的基础设施。通讯系统。这项工作是通信和电力系统联合计划的第一步,按照CIGRE WG C6.11的建议,这对于优化对现代配电业务的投资是绝对必要的。在一个小的实际案例研究中的应用结果证实了该方法的有效性。

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