This paper first discusses the operating principle of instantaneous reactive power theory. Then, the theory is introduced into shunt active power filter and its control scheme is studied. Finally, Matlab/Simulink powe...This paper first discusses the operating principle of instantaneous reactive power theory. Then, the theory is introduced into shunt active power filter and its control scheme is studied. Finally, Matlab/Simulink power system toolbox is used to simulate the system. In the simulation model, as the most common harmonic source, 3-phase thyristor bridge rectifier circuit is constructed. The simulation results before and after the shunt active filter was switched to the system corresponding to different firing angles of the thyristors are presented and analyzed, which demonstrate the practicability and reliability of the proposed shunt active filter scheme.展开更多
随着出力具有随机波动性特征的分布式电源渗透率的不断攀升以及城市电缆化率的进程加速,有源配电网线路中无功过剩和过电压的现象日益明显,对动态无功补偿装置的经济性、可靠性和精准调控能力提出更高要求。在电流源型静止同步补偿器的...随着出力具有随机波动性特征的分布式电源渗透率的不断攀升以及城市电缆化率的进程加速,有源配电网线路中无功过剩和过电压的现象日益明显,对动态无功补偿装置的经济性、可靠性和精准调控能力提出更高要求。在电流源型静止同步补偿器的基础上,该文结合双旋转移相变压器的连续调节特性,提出一种新型旋转式无功补偿器(novel rotary var compensator,NRVC)拓扑电路。通过构建NRVC稳态数学模型,深入分析得到NRVC补偿调控机理及其补偿容量约束关系。针对NRVC结构特点,提出基于瞬时无功理论的无功补偿控制策略,其中功率外环可对功率因数进行精确控制,电流内环加入限幅环节有效限流,提高装置运行可靠性。通过仿真及动模实验验证所提拓扑及其控制策略的有效性,结果验证了NRVC具备双向、连续调节补偿无功的能力,具有调节精度高、谐波畸变率低的优点。展开更多
文摘This paper first discusses the operating principle of instantaneous reactive power theory. Then, the theory is introduced into shunt active power filter and its control scheme is studied. Finally, Matlab/Simulink power system toolbox is used to simulate the system. In the simulation model, as the most common harmonic source, 3-phase thyristor bridge rectifier circuit is constructed. The simulation results before and after the shunt active filter was switched to the system corresponding to different firing angles of the thyristors are presented and analyzed, which demonstrate the practicability and reliability of the proposed shunt active filter scheme.
文摘随着出力具有随机波动性特征的分布式电源渗透率的不断攀升以及城市电缆化率的进程加速,有源配电网线路中无功过剩和过电压的现象日益明显,对动态无功补偿装置的经济性、可靠性和精准调控能力提出更高要求。在电流源型静止同步补偿器的基础上,该文结合双旋转移相变压器的连续调节特性,提出一种新型旋转式无功补偿器(novel rotary var compensator,NRVC)拓扑电路。通过构建NRVC稳态数学模型,深入分析得到NRVC补偿调控机理及其补偿容量约束关系。针对NRVC结构特点,提出基于瞬时无功理论的无功补偿控制策略,其中功率外环可对功率因数进行精确控制,电流内环加入限幅环节有效限流,提高装置运行可靠性。通过仿真及动模实验验证所提拓扑及其控制策略的有效性,结果验证了NRVC具备双向、连续调节补偿无功的能力,具有调节精度高、谐波畸变率低的优点。