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A Distributed Event-Triggered Control Strategy for DC Microgrids Based on Publish-Subscribe Model Over Industrial Wireless Sensor Networks

机译:工业无线传感器网络上基于发布-订阅模型的直流微电网事件触发分布式控制策略

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摘要

This paper presents a complete design, analysis, and performance evaluation of a novel distributed event-triggered control and estimation strategy for de microgrids. The primary objective of this work is to efficiently stabilize the grid voltage, and to further balance the energy level of the energy storage systems. The locally-installed distributed controllers are utilized to reduce the number of transmitted packets and battery usage of the installed sensors, based on a proposed event-triggered communication scheme. Also, to reduce the network traffic, an optimal observer is employed which utilizes a modified Kalman consensus filter to estimate the state of the dc microgrid via the distributed sensors. Furthermore, in order to effectively provide an intelligent data exchange mechanism for the proposed event-triggered controller, the publish-subscribe communication model is employed to setup a distributed control infrastructure in industrial wireless sensor networks. The performance of the proposed control and estimation strategy is validated via the simulations of a dc microgrid composed of renewable energy sources. The results confirm the appropriateness of the implemented strategy for the optimal utilization of the advanced industrial network architectures in the smart grids.
机译:本文提出了一种新型的分布式微电网分布式事件触发控制和估计策略的完整设计,分析和性能评估。这项工作的主要目的是有效稳定电网电压,并进一步平衡储能系统的能量水平。基于建议的事件触发的通信方案,利用本地安装的分布式控制器来减少发送的数据包数量和安装的传感器的电池使用量。同样,为了减少网络流量,采用了最佳观察者,该观察者利用改进的卡尔曼共识滤波器来通过分布式传感器估算直流微电网的状态。此外,为了有效地为所提出的事件触发控制器提供智能数据交换机制,采用发布-订阅通信模型来建立工业无线传感器网络中的分布式控制基础架构。通过对由可再生能源组成的直流微电网的仿真,验证了所提出的控制和估计策略的性能。结果证实了所实施策略在智能电网中最佳利用先进工业网络架构的适当性。

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