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Scalability analysis of aggregation web services for smart grid fast automated demand response

机译:聚合Web服务的可伸缩性分析,用于智能电网快速自动需求响应

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In this paper, we modeled stochastic wide-area communication delays in a fast automated demand response (FastADR) system using an M/M/1 queuing system. By considering a very large number of communication gateways in buildings spread over a wide area, the scalability of the aggregation communication performance was estimated by the M/M/1 transient analysis. The validity of our analysis model was confirmed in a laboratory experiment with realistic wide-area communication emulation equipment. Using the parameters from the experiment, expected aggregation service communication times were analyzed theoretically, including a large-scale FastADR system consisting of 1,000 buildings. Our scalability analysis has shown that it is necessary to divide the total system into 25 aggregation subsystems with each 40 building gateways to realize the expected aggregation Web service delay of less than 30 seconds.
机译:在本文中,我们使用M / M / 1排队系统对快速自动需求响应(FastADR)系统中的随机广域通信延迟进行了建模。通过考虑分布在广泛区域中的建筑物中的大量通信网关,可以通过M / M / 1瞬态分析来估计聚合通信性能的可伸缩性。我们的分析模型的有效性在实际的广域通信仿真设备的实验室实验中得到了证实。使用实验中的参数,从理论上分析了预期的聚合服务通信时间,包括由1,000座建筑物组成的大规模FastADR系统。我们的可伸缩性分析表明,有必要将整个系统分为25个聚合子系统,每个子系统有40个构建网关,以实现预期的聚合Web服务延迟小于30秒。

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