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Constrained coordinated distributed control of smart grid with asynchronous information exchange

机译:具有异步信息交换的智能电网约束协调分布控制

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摘要

Smart grid constrained optimal control is a complex issue due to the constant growth of grid complexity and the large volume of data available as input to smart device control. In this context, traditional centralized control paradigms may suffer in terms of the timeliness of optimization results due to the volume of data to be processed and the delayed asynchronous nature of the data transmission. To address these limits of centralized control, this paper presents a coordinated, distributed algorithm based on distributed, local controllers and a central coordinator for exchanging summarized global state information. The proposed model for exchanging global state information is resistant to fluctuations caused by the inherent interdependence between local controllers, and is robust to delays in information exchange. In addition, the algorithm features iterative refinement of local state estimations that is able to improve local controller ability to operate within network constraints. Application of the proposed coordinated, distributed algorithm through simulation shows its effectiveness in optimizing a global goal within a complex distribution system operating under constraints, while ensuring network operation stability under varying levels of information exchange delay, and with a range of network sizes.
机译:由于电网复杂性的不断增长以及作为智能设备控制输入可用的大量数据,智能电网约束的最优控制是一个复杂的问题。在这种情况下,由于要处理的数据量大和数据传输的延迟异步特性,传统的集中控制范例可能会在优化结果的及时性方面受到影响。为了解决集中控制的这些限制,本文提出了一种基于分布式本地控制器和中央协​​调器的协调分布式算法,用于交换汇总的全局状态信息。所提出的用于交换全局状态信息的模型可以抵抗由本地控制器之间的固有相互依赖性引起的波动,并且对于信息交换的延迟具有鲁棒性。此外,该算法还具有对局部状态估计进行迭代优化的功能,能够提高局部控制器在网络约束下运行的能力。所提出的协调分布式算法通过仿真的应用表明,该算法可有效地优化在受限条件下运行的复杂配电系统中的全局目标,同时确保在变化的信息交换延迟水平和网络范围内,网络的运行稳定性。

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