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首页> 外文期刊>IEEE systems journal >Consensus-Based Decentralized Optimization for Distributed Generators Power Allocation Over Time-Varying Digraphs in Microgrids
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Consensus-Based Decentralized Optimization for Distributed Generators Power Allocation Over Time-Varying Digraphs in Microgrids

机译:基于分布式发电机电力分配的基于共识的分散优化,微电网中的时变形上的电力分配

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摘要

In this article, a consensus-based decentralized optimization method for distributed generators (DGs) power allocation is proposed to ensure the economic and reliable operation of microgrids. According to the method, all parameters are designed in a fully distributed fashion, which does not depend on any centers or leaders. To further achieve decentralization and to meet the flexible requirement of DGs, the strategy is adaptable to time-varying communication topologies (time-varying digraphs) and is proved to be convergent. During the communication process, the stochastic noise is introduced to imitate a nonideal communication environment, and the convergence rate is accelerated via coupling designed gains of noise and feedback (mismatch). Meanwhile, the cost of reactive power generation and reactive power compensation are considered for a comprehensive optimization, which guarantees the locally reactive power balance and reduces the cost. Simulations based on a test microgrid are used to verify the effectiveness of the proposed method. Finally, the dynamic characteristics and robustness are evaluated and compared by numerical simulation results.
机译:在本文中,提出了一种基于共识的分布式发电机(DGS)功率分配的分散优化方法,以确保微普林的经济可靠运行。根据该方法,所有参数都以完全分布式的方式设计,这不依赖于任何中心或领导者。为了进一步实现权力下放并满足DG的灵活要求,该策略适应时变通信拓扑(时变正向),被证明是收敛的。在通信过程中,引入随机噪声来模仿非抗性通信环境,并且通过耦合设计的噪声和反馈(不匹配)来加速收敛速率。同时,考虑了无功发电和无功补偿的成本,以实现全面的优化,这保证了局部无功功率平衡并降低了成本。基于测试微电网的仿真用于验证所提出的方法的有效性。最后,通过数值模拟结果评估和比较动态特性和鲁棒性。

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