为提高中频逆变器输出电压质量和稳定性,基于单相H桥逆变器的拓扑结构,提出一种采用电容电流单环的比例积分谐振控制策略PIR(proportional integral resonance)。新策略以电容电流为被控量,将负载电流作为一种扰动,引入电流给定前馈补...为提高中频逆变器输出电压质量和稳定性,基于单相H桥逆变器的拓扑结构,提出一种采用电容电流单环的比例积分谐振控制策略PIR(proportional integral resonance)。新策略以电容电流为被控量,将负载电流作为一种扰动,引入电流给定前馈补偿控制,通过设置合适的补偿控制器,补偿加入带来的谐振频率处增益减小的问题。新策略只需单环控制,成本降低,可实现无静差控制。最后利用Matlab/Simulink建立了单相H桥逆变器的仿真模型,通过仿真实验验证了所提策略对中频400 Hz逆变器输出电压控制的有效性。展开更多
One of the very important functions of three-phase inverter is to maintain the symmetric three-phase output voltage when the three-phase loads are unbalanced. Although the traditional symmetrical component decomposing...One of the very important functions of three-phase inverter is to maintain the symmetric three-phase output voltage when the three-phase loads are unbalanced. Although the traditional symmetrical component decomposing and superimpose theory can keep the voltage balance through compensating the positive-, negative- and zero-sequence components of the output voltage of inverter, however, this method is time-consuming and not suitable for control. Aiming at high power medium frequency inverter source, a P+Resonant (Proportion and Resonant) controller which ensured a balanced three phase output voltage under unbalanced load is proposed in this paper. The regulator was proved to be applicable to both three-phase three-wire system and three-phase four-wire system and developed two methods of realization. The simulation results verified that this method can suppressed effectively the output voltage distorted caused by the unbalanced load and attained a high quality voltage waveforms.展开更多
文摘为提高中频逆变器输出电压质量和稳定性,基于单相H桥逆变器的拓扑结构,提出一种采用电容电流单环的比例积分谐振控制策略PIR(proportional integral resonance)。新策略以电容电流为被控量,将负载电流作为一种扰动,引入电流给定前馈补偿控制,通过设置合适的补偿控制器,补偿加入带来的谐振频率处增益减小的问题。新策略只需单环控制,成本降低,可实现无静差控制。最后利用Matlab/Simulink建立了单相H桥逆变器的仿真模型,通过仿真实验验证了所提策略对中频400 Hz逆变器输出电压控制的有效性。
文摘One of the very important functions of three-phase inverter is to maintain the symmetric three-phase output voltage when the three-phase loads are unbalanced. Although the traditional symmetrical component decomposing and superimpose theory can keep the voltage balance through compensating the positive-, negative- and zero-sequence components of the output voltage of inverter, however, this method is time-consuming and not suitable for control. Aiming at high power medium frequency inverter source, a P+Resonant (Proportion and Resonant) controller which ensured a balanced three phase output voltage under unbalanced load is proposed in this paper. The regulator was proved to be applicable to both three-phase three-wire system and three-phase four-wire system and developed two methods of realization. The simulation results verified that this method can suppressed effectively the output voltage distorted caused by the unbalanced load and attained a high quality voltage waveforms.