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Research on the Bi-Level Optimization Model of Distribution Network Based on Distributed Cooperative Control

机译:基于分布式协作控制的分销网络双级优化模型研究

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The uncertainty of high-permeability renewable energy output brings about great challenges to the operation control in distribution network. The traditional control mode has lower reliability, higher calculation and greater communication pressure. It is more difficult to realize the technical requirements of “plug and play” of power components. Therefore, a bi-level coordinated control model is proposed for the operation and energy management optimization of active distribution network with multi-microgrid in this paper. The consensus algorithm which exists in the multi-agent system is applied in the upper-level model and the capacity utilization ratio of the different microgrids is set as the consistent variable because the ratio of resistance and reactance is usually larger in distribution network and the interests in the different microgrid entities should be distributed fairly. Moreover, in the lower-level model, the lowest operating cost is the final goal and the model predictive control rolling optimization is utilized to reasonably allocate the output of the equipments in the microgrid according to the changing trend of renewable energy. Thereby the tracking of the upper-level control commands is realized. Finally, the simulations are conducted in the IEEE-33 nodes distribution system connected to a multi-microgrid to verify the feasibility and effectiveness of the proposed method, in which a reference for the optimal operation of higher penetration renewable energy to distribution network is provided.
机译:高渗透可再生能源输出的不确定性为分销网络运行控制带来了巨大挑战。传统的控制模式具有较低的可靠性,计算和更大的通信压力。更难以实现动力组件“即插即用”的技术要求。因此,提出了一种双级协调控制模型,用于本文中具有多微电网的主动配电网络的运行和能量管理优化。多代理系统中存在的共识算法应用于上层模型,并且不同微电网的容量利用率被设定为一致变量,因为电阻和电抗的比率通常在分配网络和兴趣中较大在不同的微电网实体中应公平分发。此外,在较低级模型中,最低运营成本是最终目标,并且根据可再生能源的变化趋势,利用模型预测控制轧制优化来合理地分配了微普林机中的设备输出。从而实现了上层控制命令的跟踪。最后,在连接到多微电网的IEEE-33节点分配系统中进行模拟,以验证所提出的方法的可行性和有效性,其中提供了对分配网络的更高渗透可再生能量的最佳运行的参考。

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