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作 者:许剑桥 Xu Jianqiao(School of Special Purpose Motor Vehicle and Emergency Industry Suizhou Vocational&Technical College,Hubei Suizhou 441300,China)
机构地区:[1]随州职业技术学院专用汽车与应急产业学院,湖北随州441300
出 处:《燃气轮机技术》2025年第1期20-23,共4页Gas Turbine Technology
摘 要:本文针对微电网分布式弹性电流控制问题展开研究。在燃气轮机电厂系统中,通过控制电网中各个节点的电流,实现对电力系统的稳定运行和优化配置。以提高电力系统的可靠性和可持续性为目标,本文采用多种分布式弹性电流控制策略,包括基于分时电价、需求侧响应和动态功率平衡的控制方法。通过模拟仿真和实际场景测试,探究了电力系统中各个节点间的电能交换行为、供需平衡策略以及系统的鲁棒性。结果表明,采用分布式弹性电流控制策略能够有效提高微电网系统的能源利用效率,降低系统运行成本,提高供电可靠性。本文的研究成果对于推动微电网分布式弹性电流控制技术的应用和发展具有重要意义。This paper focuses on the research of distributed elastic current control in microgrid.In gas turbine power plant systems,controlling the current of each node in the power grid achieves stable operation and optimal configuration of the power system.With the goal of improving the reliability and sustainability of the power system,this paper adopts various distributed elastic current control strategies,including control methods based on time-of-use electricity price,demand response,and dynamic power balance.Through simulation and actual scenario testing,this study explores the energy exchange behavior between nodes in the power system,supply-demand balance strategies,and system robustness.The results show that using distributed elastic current control strategies can effectively improve the energy utilization efficiency of microgrid systems,reduce operating costs,and enhance power supply reliability.The research findings of this paper are of great significance for promoting the application and development of distributed elastic current control technology in microgrids.
关 键 词:微电网 分布式弹性电流控制 燃气轮机电厂 电能交换 供需平衡
分 类 号:TK472[动力工程及工程热物理—动力机械及工程]
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