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Proposing a new algorithm for defining the shortest distance among ZigBee-based communication devices in microgrids

机译:提出了一种新算法,用于定义微电网中基于ZigBee的通信设备之间的最短距离

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To improve the controllability within Future microgrids, a communication network needs to be available to provide data transfer within the MG. Wireless technologies such as ZigBee seem to be a good alternative for data transfer within MGs mainly due to low cost, more flexibility and acceptable data transfer rate. In such networks ZigBee-based repeaters are required to strengthen the communication signals if the DG units are scattered over a vast area. This paper mainly discusses on the algorithms required for defining the shortest distance between the DG units and the MG central controller. Different methods are discussed and a new algorithm is presented. Through the numerical analyses, it is demonstrated that the proposed method leads to a high reduction in the number of repeaters than other conventional algorithms.
机译:为了提高未来的微电网内的可控性,需要在MG内提供通信网络以提供数据传输。 ZigBee等无线技术似乎是MGS内的数据传输的替代方案,主要是由于成本低,灵活性更大和可接受的数据传输速率。在这种网络中,如果DG单元分散在大面积上,则需要基于ZigBee的中继器来增强通信信号。本文主要讨论定义DG单元与MG中央控制器之间最短距离所需的算法。讨论了不同的方法,并呈现了一种新的算法。通过数值分析,证明所提出的方法导致比其他传统算法的中继器数量高。

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