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Distributed Adaptive Dual Control via Consensus Algorithm in the Energy Internet

机译:通过能源互联网共识算法分布式自适应双重控制

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摘要

This article investigates a distributed adaptive dual control that employs both consensus algorithm and improved equal incremental principle (IEIP), to guarantee the security operation while reducing the energy consumption of the energy Internet (EI). Since the security operation is a critical factor of the EI with the energy hub (EH), it is necessary for the EI to adjust the outputs of EHs and the system parameters, which have a great influence on the performance. The consensus-based control of the EI can resolve the energy-coupling issue and accurately share the electricity and heat loads power without requiring the information of the network parameters, which is hard to know. Meanwhile, the variations of system parameters caused by the droop action greatly impact the security operation of the EI. It can be adaptively recovered by executing the proposed control strategy. Furthermore, in order to reduce the energy consumption, the equipment in hubs should also be managed in view of the features of EH. The minimal loss of the energy can be achieved by utilizing the control of devices via the IEIP by considering the coupling characteristics of devices. The performance of the proposed method is demonstrated through numerical case studies.
机译:本文调查了分布式自适应双控制,采用了共识算法和改进的等于增量原理(IEIP),以确保安全运行,同时降低能源互联网(EI)的能耗。由于安全操作是EI具有能量集线器(EH)的临界因素,因此EI需要调整EHS和系统参数的输出,这对性能产生了很大影响。基于EI的基于协商的控制可以解决能量耦合问题,并准确地共享电力和热负荷,而不需要网络参数的信息,这很难知道。同时,由下垂动作引起的系统参数的变化极大地影响了EI的安全操作。通过执行所提出的控制策略,可以自适应地恢复。此外,为了降低能量消耗,考虑到欧盟的特征,还应管理集线器中的设备。通过考虑装置的耦合特性,可以通过利用设备的控制来实现能量的最小损耗。通过数值案例研究证明了所提出的方法的性能。

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