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A Hierarchical Optimization Strategy of the Energy Router-Based Energy Internet

机译:基于能源路由器的能源互联网的分层优化策略

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摘要

Due to the capacity limitation and the renewable energy's uncontrollability, multiple energy hubs (EHs) are connected by energy routers (ERs) to form a network structure and further build the future energy internet. With concave objective functions and/or nonlinear operation constraints, the centralized optimal dispatch of interconnected EHs is difficult to solve. In order to reduce the complexity of centralized optimal dispatch on large-scale systems and protect the information privacy of different EHs, a hierarchical optimization strategy is put forward for the ER-based energy internet. Specifically, the lower level is the optimal dispatch within EHs, where the dispatch model of EH is further optimized by considering variable dispatch factors, and the information privacy of different EHs is preserved. The upper level is the energy routing control between EHs, where the end-to-end power transmission according to contract path is realized through the controllability of ERs and energy routing protocols. Finally, the effectiveness of the hierarchical optimization strategy and model are verified by simulations.
机译:由于容量限制和可再生能源的不可控制性,多个能源枢纽(EH)通过能源路由器(ER)连接在一起,形成网络结构,并进一步构建了未来的能源互联网。具有凹目标函数和/或非线性操作约束,互连的EH的集中式最优调度很难解决。为了降低大型系统集中优化调度的复杂性,保护不同EHs的信息隐私,针对基于ER的能源互联网提出了一种分层优化策略。具体而言,较低的级别是EH内的最佳调度,其中通过考虑可变的调度因素进一步优化EH的调度模型,并保留不同EH的信息隐私。上层是EH之间的能量路由控制,其中通过ER的可控制性和能量路由协议来实现根据合同路径进行的端到端电力传输。最后,通过仿真验证了层次优化策略和模型的有效性。

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