何永菁, 王玮, 吴学智. 考虑通信延时的分布式电源经济优化调度策略[J]. 电网技术, 2021, 45(8): 3015-3024. DOI: 10.13335/j.1000-3673.pst.2020.1245
引用本文: 何永菁, 王玮, 吴学智. 考虑通信延时的分布式电源经济优化调度策略[J]. 电网技术, 2021, 45(8): 3015-3024. DOI: 10.13335/j.1000-3673.pst.2020.1245
HE Yongjing, WANG Wei, WU Xuezhi. Economic Dispatch Strategy for Distributed Generators Considering Communication Delays[J]. Power System Technology, 2021, 45(8): 3015-3024. DOI: 10.13335/j.1000-3673.pst.2020.1245
Citation: HE Yongjing, WANG Wei, WU Xuezhi. Economic Dispatch Strategy for Distributed Generators Considering Communication Delays[J]. Power System Technology, 2021, 45(8): 3015-3024. DOI: 10.13335/j.1000-3673.pst.2020.1245

考虑通信延时的分布式电源经济优化调度策略

Economic Dispatch Strategy for Distributed Generators Considering Communication Delays

  • 摘要: 分布式电源优化调度依赖于各设备间的通信,通信延时会影响调度过程,甚至可能造成系统运行的不稳定。针对稀疏通信网络存在通信延时的情况下多种分布式电源的经济调度问题,提出一种基于扩散算法的全分布式经济调度策略。首先,设计了控制本地发电机组的多智能体结构,多个智能体间的通信及控制不依赖于“领导单元”;建立了系统的经济调度模型,该模型以系统运行成本最低为目标,对分布式电源和需求侧柔性负荷有功出力进行优化。在此基础上,研究通信延时对有功调度的影响,设计了一种支持完全分布式优化的改进扩散策略,与一致性控制方法相比,在相同延时的情况下改进扩散策略能够保证更快的收敛速度和更高的稳定性。多个场景的仿真结果验证了所提策略的正确性和有效性。

     

    Abstract: The optimal dispatch of distributed generators relies on the communication between devices. The communication delay affects the dispatching process and may even cause the instability of the system operation. Aiming at the economic dispatch problem of the multiple distributed generators in the case of a sparse communication network with communication delays, a fully distributed economic dispatch strategy based on the diffusion algorithm is proposed. First, a multi-agent structure for controlling the distributed generators is designed so that the communication and control between these multiple agents do not depend on any "leader" unit. An economic dispatch model of the system is established, which aims at the lowest operating cost of the whole system. The active power of the distributed generators and the demand-side flexible loads is optimized. On this basis, the influence of communication delay on the active power dispatch is studied, and an improved diffusion strategy supporting fully distributed optimization is designed. Compared with the consensus method, the improved diffusion strategy can ensure better performance under the same delay with faster convergence speed and higher stability. Simulation results of several scenarios verify the correctness and effectiveness of the proposed strategy.

     

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