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An MPC-Based Dual-Solver Optimization Method for DC Microgrids With Simultaneous Consideration of Operation Cost and Power Loss

机译:一种基于MPC的DC微电网的DC微电网的优化方法,同时考虑运营成本和功率损耗

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摘要

In this paper, a dual-solver framework based on model predictive control (MPC) is proposed, E-solver and L-solver. The economic scheduling problem is formulated using mixed-integer linear programming (MILP), which can be solved in an efficient way by using commercial solver (E-solver). While the transmission loss problem is formulated using non-linear programming (NLP), which can be solved in the interior point method, namely L-solver. The E-solver provides an economic priority power scheduling plan for the L-solver, and the L-solver solves the entire microgrid accurate power flow scheduling plan. The proposed planning model decomposition technique aims to solve the planning model in a time-sharing manner and combines the characteristics of the two optimizers with a reasonable matching algorithm to achieve economic, efficient, and fast real-time control. A case study of a DC microgrid is employed to assess the performance of the online optimization-based control strategy. Simulations based on eight-node DC microgrid show that the method reduces the operating cost by 12.10% and increases the calculation speed by 80.18% comparedwith the traditional interior pointmethod. With a shorter delay, the proposed optimization method will facilitate the implementation of real-time control and optimization.
机译:在本文中,提出了一种基于模型预测控制(MPC)的双求解器框架,E-Solver和L-求解器。使用混合整数线性编程(MILP)配制了经济调度问题,其可以通过使用商业求解器(E-Solver)以有效的方式解决。虽然使用非线性编程(NLP)配制传输损耗问题,但是可以在内部点法中解决,即L-Solver。 E-Solver为L-Solver提供了经济优先级功率调度计划,L-Solver解决了整个微电网精确功率流量调度计划。所提出的规划模型分解技术旨在以时间共享方式解决规划模型,并将两个优化器的特性与合理的匹配算法相结合,实现经济,高效和快速的实时控制。采用对DC微电网的案例研究来评估基于在线优化的控制策略的性能。基于八个节点DC微电网的模拟表明,该方法将运营成本降低了12.10%,并将计算速度提高了传统的内部点滴水比较了80.18%。延迟较短,所提出的优化方法将有助于实现实时控制和优化。

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