基于电压源逆变器(V S I)的静止无功发生器(SVG)直接应用PWM控制技术,具有结构紧凑、易于控制、谐波含量小以及功率密度大等优点。文中给出了基于三相V S I的6 kV/±200 kV.A PWM型SVG的主电路结构与参数,提出了一种SVG的直接功率...基于电压源逆变器(V S I)的静止无功发生器(SVG)直接应用PWM控制技术,具有结构紧凑、易于控制、谐波含量小以及功率密度大等优点。文中给出了基于三相V S I的6 kV/±200 kV.A PWM型SVG的主电路结构与参数,提出了一种SVG的直接功率控制方式。应用M ATLAB进行系统仿真,表明基于V S I的PWM型SVG具有良好的动态性能与静态补偿效果,验证了主电路与直接功率控制方式的正确性、优越性与有效性。展开更多
This paper discusses modeling,simulation and control strategy of a novel 10kV transformerless static synchronous compensator based on a 15-level modular multilevel converter(M-STATCOM).The new shunt compensator,with t...This paper discusses modeling,simulation and control strategy of a novel 10kV transformerless static synchronous compensator based on a 15-level modular multilevel converter(M-STATCOM).The new shunt compensator,with the characteristics like modular design,high front-end flexibility,low generation of harmonics,etc.,is well suitable for medium or high-voltage utility grid without line-frequency transformers.Its topology,principle of operation under static var generating condition and control system are described comprehensively.Besides,a new corresponding control scheme called phase opposition disposition(POD) is proposed for fast compensation of reactive power and harmonics and for making the three-phase source side currents balanced.The results obtained from various simulated waveforms in the MATLAB / SIMULINK environment validate that the MSTATCOM is capable of reactive power compensation,harmonic cancellation and simultaneous load balancing.展开更多
文摘基于电压源逆变器(V S I)的静止无功发生器(SVG)直接应用PWM控制技术,具有结构紧凑、易于控制、谐波含量小以及功率密度大等优点。文中给出了基于三相V S I的6 kV/±200 kV.A PWM型SVG的主电路结构与参数,提出了一种SVG的直接功率控制方式。应用M ATLAB进行系统仿真,表明基于V S I的PWM型SVG具有良好的动态性能与静态补偿效果,验证了主电路与直接功率控制方式的正确性、优越性与有效性。
文摘This paper discusses modeling,simulation and control strategy of a novel 10kV transformerless static synchronous compensator based on a 15-level modular multilevel converter(M-STATCOM).The new shunt compensator,with the characteristics like modular design,high front-end flexibility,low generation of harmonics,etc.,is well suitable for medium or high-voltage utility grid without line-frequency transformers.Its topology,principle of operation under static var generating condition and control system are described comprehensively.Besides,a new corresponding control scheme called phase opposition disposition(POD) is proposed for fast compensation of reactive power and harmonics and for making the three-phase source side currents balanced.The results obtained from various simulated waveforms in the MATLAB / SIMULINK environment validate that the MSTATCOM is capable of reactive power compensation,harmonic cancellation and simultaneous load balancing.