为响应配电网用户的差异化需求,实现配电网柔性运行,该文将柔性多状态开关(flexible distribution switch,FDS)引入到配电网,并在阐述FDS技术理念和内涵的基础上,对基于多端FDS的配电网分布式电源消纳、电能质量改善、配电网运行优化、...为响应配电网用户的差异化需求,实现配电网柔性运行,该文将柔性多状态开关(flexible distribution switch,FDS)引入到配电网,并在阐述FDS技术理念和内涵的基础上,对基于多端FDS的配电网分布式电源消纳、电能质量改善、配电网运行优化、自愈控制等调控技术进行详细地分析和说明。最后以广东某地区电网为案例,对基于多端FDS的配电网调控技术效果进行仿真分析和验证。展开更多
This paper proposes about a powerful control mechanism of UPQC (Unified Power Quality Conditioner) work on voltage source inverter which can effectively compensate source current harmonics and also mitigate all voltag...This paper proposes about a powerful control mechanism of UPQC (Unified Power Quality Conditioner) work on voltage source inverter which can effectively compensate source current harmonics and also mitigate all voltage collapse such as dip, swell, voltage unbalances and harmonics. The consolidation of series and parallel active power filters sharing mutual DC bus capacitor forms UPQC. PI (Proportional Integral) controller is mainly used in order to maintain continual DC voltage along with the hysteresis current controller. The parallel and series power filters were designed using 3-phase voltage source inverter. The reference signals for shunt and series active power filters were obtained by Synchronous Reference Frame (SRF) theory and Power Reactive (PQ) theory respectively. By using these theories, reference signals were obtained which was fed to the controllers for generating switching pulses for parallel and series active filters. The UPQC dynamic performance is obtained through testing terms like the compensation of voltage, current harmonics and all voltage distortion associated with 3-phase 3-wire power system which is simulated using MATLAB-Simulink software.展开更多
文摘为响应配电网用户的差异化需求,实现配电网柔性运行,该文将柔性多状态开关(flexible distribution switch,FDS)引入到配电网,并在阐述FDS技术理念和内涵的基础上,对基于多端FDS的配电网分布式电源消纳、电能质量改善、配电网运行优化、自愈控制等调控技术进行详细地分析和说明。最后以广东某地区电网为案例,对基于多端FDS的配电网调控技术效果进行仿真分析和验证。
文摘This paper proposes about a powerful control mechanism of UPQC (Unified Power Quality Conditioner) work on voltage source inverter which can effectively compensate source current harmonics and also mitigate all voltage collapse such as dip, swell, voltage unbalances and harmonics. The consolidation of series and parallel active power filters sharing mutual DC bus capacitor forms UPQC. PI (Proportional Integral) controller is mainly used in order to maintain continual DC voltage along with the hysteresis current controller. The parallel and series power filters were designed using 3-phase voltage source inverter. The reference signals for shunt and series active power filters were obtained by Synchronous Reference Frame (SRF) theory and Power Reactive (PQ) theory respectively. By using these theories, reference signals were obtained which was fed to the controllers for generating switching pulses for parallel and series active filters. The UPQC dynamic performance is obtained through testing terms like the compensation of voltage, current harmonics and all voltage distortion associated with 3-phase 3-wire power system which is simulated using MATLAB-Simulink software.