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Iterative Distributed MPC for Power Dispatching Problem in Smart Grid

机译:智能电网电力分配问题的迭代分布式MPC

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This paper considers a power dispatching problem in a smart grid, which consists of one generator and n loads and is subject to several physical constraints. To maximize the social benefit, we first develop a distributed gradient algorithm to compute the optimal stable states. Then a computationally convenient distributed model predictive control (DMPC) algorithm is proposed to stabilize the smart grid into a small neighborhood of the optimal stable states. The closed loop system is guaranteed to satisfy the constraints and achieve the social benefit maximization. Numerical examples are given to illustrate the performance of the designed schemes.
机译:本文考虑了智能电网中的功率分配问题,该智能电网由一台发电机和n个负载组成,并受到多种物理约束。为了最大化社会效益,我们首先开发一种分布式梯度算法来计算最佳稳定状态。然后,提出了一种计算方便的分布式模型预测控制(DMPC)算法,以将智能电网稳定在最佳稳定状态的较小邻域中。保证闭环系统满足约束条件并实现社会效益最大化。数值例子说明了所设计方案的性能。

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