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Distributed Dynamic Programming-Based Approach for Economic Dispatch in Smart Grids

机译:基于分布式动态规划的智能电网经济调度方法

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In this paper, the discrete economic dispatch problem is formulated as a knapsack problem. An effective distributed strategy based on distributed dynamic programming algorithm is proposed to optimally allocate the total power demand among different generation units considering the generation limits and ramping rate limits. The proposed distributed strategy is implemented based on a multiagent system framework which only requires local computation and communication among neighboring agents. Thus, it enables the sharing of computational and communication burden among distributed agents. In addition, the proposed strategy can be implemented with asynchronous communication, which may lead to simpler implementation and faster convergence speed. Simulation results with a four-generator system and the IEEE 162-bus system are presented to demonstrate the effectiveness of the proposed distributed strategy.
机译:本文将离散的经济调度问题表述为背包问题。提出了一种基于分布式动态规划算法的有效分布式策略,在考虑发电极限和斜坡率极限的情况下,在不同发电单元之间最优分配总功率需求。所提出的分布式策略是基于多代理系统框架实现的,该框架仅需要本地计算和相邻代理之间的通信。因此,它使分布式代理之间可以共享计算和通信负担。另外,可以通过异步通信来实现所提出的策略,这可以导致更简单的实现和更快的收敛速度。给出了具有四发电机系统和IEEE 162总线系统的仿真结果,以证明所提出的分布式策略的有效性。

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