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作 者:于广亮[1] 张保会[1] 谢欢[1] 王立永[1] 李鹏[1]
机构地区:[1]西安交通大学电气工程学院,陕西省西安市710049
出 处:《中国电机工程学报》2007年第4期26-32,共7页Proceedings of the CSEE
基 金:国家自然科学基金重大项目(50595413)。
摘 要:随着同步相量测量单元(PMU)在电力系统中的广泛应用,开展基于广域测量系统(WAMS)的广域控制的研究具有重要的理论和实际意义。由于电力系统稳定问题本质上具有全局性,因此在电力系统的控制规律中引入广域信息可进一步改善系统的动态性能,提高系统承受大扰动的能力。该文采用全系统惯性中心坐标,以发电机转子角距离稳定平衡点最近为控制目标,以汽轮发电机组励磁电压与汽门为被控对象,应用非线性控制的逆系统理论分析了多机系统中励磁与汽门系统的可逆性,并设计了基于广域信息的非线性全局综合控制器,实现了“局部控制,服务全局”的控制策略。通过4机系统的数字仿真对比了该非线性全局综合控制器与常规PID控制器、非线性分散综合控制器的控制效果,结果表明,基于广域信息的非线性全局综合控制器更能减小系统的过渡时间、振荡次数及振荡幅度,更能增加系统的故障临界切除时间,增强系统的暂态稳定性。With the wide application of synchronized phase measurement unit(PMU) in power system, the wide-area measurement system(WAMS) has enabled the use of a combination of measured signals from remote location for global control purpose. Since in nature power system stability is related to all generators, the introduction of wide-area information into nonlinear integrated control can improve the dynamic performance of power system and enhance power system stability. According to multivariable inverse system theory, this paper verifies the reversibility of excitation and turbine control system for a turbogenerator under the center of inertia reference frame(COIL and presents a novel nonlinear global integrated controller based on wide-area information including the on-line measured center of rotor angle and total unbalanced power. This controller regards the closest rotor angle to stable equilibrium point as control objective by modulating excitation voltage and turbine valve, and is considered as a "control the local to serve the global" controller Digital simulation demonstrates that the four-machine system under the nonlinear global integrated control has less settling time, swing times, oscillatory peak value and more critical clear time and better transient stability performance than that under PID control or nonlinear decentralized integrated control.
分 类 号:TM76[电气工程—电力系统及自动化]
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