基于电力系统数据传输网络和广域同步测量技术,提出1种用于抑制电力系统低频振荡的可介入式广域电力系统稳定器(power system stabilizer,PSS);利用可介入式广域PSS,调度通信中心可通过电力数据网络对其进行整定、控制策略修改以及投入...基于电力系统数据传输网络和广域同步测量技术,提出1种用于抑制电力系统低频振荡的可介入式广域电力系统稳定器(power system stabilizer,PSS);利用可介入式广域PSS,调度通信中心可通过电力数据网络对其进行整定、控制策略修改以及投入和退出控制。通过与常规PSS比较,可介入式广域PSS能够根据运行方式的变化,实时修改PSS的控制策略和参数,更好地抑制电力系统低频振荡。利用4机2区域系统的时域仿真验证了该方法的有效性。展开更多
In large inter connected power systems, inter-area oscillations are turned to be a severe problem. Hence inter-area oscillations cause severe problems like damage to generators, reduce the power transfer capability of...In large inter connected power systems, inter-area oscillations are turned to be a severe problem. Hence inter-area oscillations cause severe problems like damage to generators, reduce the power transfer capability of transmission lines, increase wear and tear on network components, increase line losses etc. This paper is to maintain the stability of system by damping inter-area oscillations. Implementation of new equipment consists of high power electronics based technologies such as FACTs and proper controller design has become an essential to provide better damping performance than Power System Stabilizer (PSS). With development of Wide Area Measurement System (WAMS), remote signals have become as feedback signals to design Wide Area Damping Controller (WADC) for FACTs devices. In this work, POD is applied to both SVC and SSSC. Simulation studies are carried out in Power System Analysis Toolbox (PSAT) environment to evaluate the effectiveness of the FACTs controller in a large area power system. Results show that extensive analysis of FACTs controller for improving stability of system.展开更多
文摘基于电力系统数据传输网络和广域同步测量技术,提出1种用于抑制电力系统低频振荡的可介入式广域电力系统稳定器(power system stabilizer,PSS);利用可介入式广域PSS,调度通信中心可通过电力数据网络对其进行整定、控制策略修改以及投入和退出控制。通过与常规PSS比较,可介入式广域PSS能够根据运行方式的变化,实时修改PSS的控制策略和参数,更好地抑制电力系统低频振荡。利用4机2区域系统的时域仿真验证了该方法的有效性。
文摘In large inter connected power systems, inter-area oscillations are turned to be a severe problem. Hence inter-area oscillations cause severe problems like damage to generators, reduce the power transfer capability of transmission lines, increase wear and tear on network components, increase line losses etc. This paper is to maintain the stability of system by damping inter-area oscillations. Implementation of new equipment consists of high power electronics based technologies such as FACTs and proper controller design has become an essential to provide better damping performance than Power System Stabilizer (PSS). With development of Wide Area Measurement System (WAMS), remote signals have become as feedback signals to design Wide Area Damping Controller (WADC) for FACTs devices. In this work, POD is applied to both SVC and SSSC. Simulation studies are carried out in Power System Analysis Toolbox (PSAT) environment to evaluate the effectiveness of the FACTs controller in a large area power system. Results show that extensive analysis of FACTs controller for improving stability of system.