For the advantages of easy realization and rapidly intelligent response,the one-cycle control was applied in five-phase six-leg switching power amplifier for magnetic bearing.This paper improves the one-cycle control ...For the advantages of easy realization and rapidly intelligent response,the one-cycle control was applied in five-phase six-leg switching power amplifier for magnetic bearing.This paper improves the one-cycle control considering resistance voltage drop and derives its mathematical models.The improved algorithm is compared with the former one.The simulation and experimental results show that the improved algorithm can effectively reduce the output current ripple,achieve good tracking of the given current,improve the control accuracy,and verify the effectiveness and superiority of the method.展开更多
The main advantage of one-cycle control is its ability to reject input disturbance in one-cycle. Despite this great ability, it can not provide good responses in following commands and rejecting load disturbance. This...The main advantage of one-cycle control is its ability to reject input disturbance in one-cycle. Despite this great ability, it can not provide good responses in following commands and rejecting load disturbance. This study explores the way to overcome these problems by using another controller. Although the idea of using output feedback has been used in previous works, by considering a simple model for one-cycle controller, the design of the controller has become simpler in this work. In the proposed method, difficult mathematical modeling is avoided. Based on decupling of effects of feedback and input voltage disturbance, a simple model for one-cycle controller has been given. Therefore, by employing a conventional averaging method and the model of one-cycle controller, design of proportional integral differential controller has become straightforward.展开更多
Control strategy affects directly the working performances of dynamic voltage regulator (DVR). One-cycle control is an effective nonlinear signal modulation control method. In this paper, a new one-cycle control sch...Control strategy affects directly the working performances of dynamic voltage regulator (DVR). One-cycle control is an effective nonlinear signal modulation control method. In this paper, a new one-cycle control scheme for DVR was proposed in single phase supply system. On the basis of principle analysis, the corresponding one-cycle control model for DVR was built up, which is characterized by simple control circuits, good control performance, and high control precision. As an example, a control model for single-phase DVR was simulated by using Matlab/Simulink and SimPowerSystem. The results show that the load voltage could be compensated quickly at the points of supply voltage stepping down and up, and the relative error was less than 4% in the whole voltage sag process. Both theory analysis and simulation results show that the new one-cycle control scheme for DVR is effective.展开更多
三相三电平VIENNA整流器作为三电平Boost型中点箝位(neutral point clamped,NPC)结构变换器一种,具有电路结构简单、开关电压应力小、输入电流谐波含量低、可实现输入单位功率因数校正等优点,适合应用于高压中大功率场合。同时,三相功...三相三电平VIENNA整流器作为三电平Boost型中点箝位(neutral point clamped,NPC)结构变换器一种,具有电路结构简单、开关电压应力小、输入电流谐波含量低、可实现输入单位功率因数校正等优点,适合应用于高压中大功率场合。同时,三相功率因数校正(power factor correction,PFC)整流器的单周期控制方案因其控制简单,无需乘法器及采用输入电压受到广泛研究。输出中点电位波动是NPC结构变换器的一个固有问题,以基于单周期控制的三相三电平VIENNA整流器为研究对象,详细地分析整流器输出中点电位波动机理,根据单周期控制方案的特点,提出在三相输入电流采样中注入三次谐波电流分量,同时分析三次谐波电流注入后对整流器输出中点电位的影响,给出三次谐波电流最佳注入系数。在此基础之上,向传统单周期控制系统中继续引入均压环路,使得最终改进后的三相三电平VIENNA整流器单周期控制系统一方面可以提高整流器直流母线电压利用率,另一方面可以有效抑制中点电位的直流和交流波动。仿真与实验验证了所提出的改进单周期控制策略对于整流器输出中点电位平衡控制的有效性。展开更多
基金supported by the National Science Foundation of China(No.51607096)。
文摘For the advantages of easy realization and rapidly intelligent response,the one-cycle control was applied in five-phase six-leg switching power amplifier for magnetic bearing.This paper improves the one-cycle control considering resistance voltage drop and derives its mathematical models.The improved algorithm is compared with the former one.The simulation and experimental results show that the improved algorithm can effectively reduce the output current ripple,achieve good tracking of the given current,improve the control accuracy,and verify the effectiveness and superiority of the method.
文摘The main advantage of one-cycle control is its ability to reject input disturbance in one-cycle. Despite this great ability, it can not provide good responses in following commands and rejecting load disturbance. This study explores the way to overcome these problems by using another controller. Although the idea of using output feedback has been used in previous works, by considering a simple model for one-cycle controller, the design of the controller has become simpler in this work. In the proposed method, difficult mathematical modeling is avoided. Based on decupling of effects of feedback and input voltage disturbance, a simple model for one-cycle controller has been given. Therefore, by employing a conventional averaging method and the model of one-cycle controller, design of proportional integral differential controller has become straightforward.
基金The National Science and Technology Sup-port Project (No.2007BAA12B03)
文摘Control strategy affects directly the working performances of dynamic voltage regulator (DVR). One-cycle control is an effective nonlinear signal modulation control method. In this paper, a new one-cycle control scheme for DVR was proposed in single phase supply system. On the basis of principle analysis, the corresponding one-cycle control model for DVR was built up, which is characterized by simple control circuits, good control performance, and high control precision. As an example, a control model for single-phase DVR was simulated by using Matlab/Simulink and SimPowerSystem. The results show that the load voltage could be compensated quickly at the points of supply voltage stepping down and up, and the relative error was less than 4% in the whole voltage sag process. Both theory analysis and simulation results show that the new one-cycle control scheme for DVR is effective.
文摘三相三电平VIENNA整流器作为三电平Boost型中点箝位(neutral point clamped,NPC)结构变换器一种,具有电路结构简单、开关电压应力小、输入电流谐波含量低、可实现输入单位功率因数校正等优点,适合应用于高压中大功率场合。同时,三相功率因数校正(power factor correction,PFC)整流器的单周期控制方案因其控制简单,无需乘法器及采用输入电压受到广泛研究。输出中点电位波动是NPC结构变换器的一个固有问题,以基于单周期控制的三相三电平VIENNA整流器为研究对象,详细地分析整流器输出中点电位波动机理,根据单周期控制方案的特点,提出在三相输入电流采样中注入三次谐波电流分量,同时分析三次谐波电流注入后对整流器输出中点电位的影响,给出三次谐波电流最佳注入系数。在此基础之上,向传统单周期控制系统中继续引入均压环路,使得最终改进后的三相三电平VIENNA整流器单周期控制系统一方面可以提高整流器直流母线电压利用率,另一方面可以有效抑制中点电位的直流和交流波动。仿真与实验验证了所提出的改进单周期控制策略对于整流器输出中点电位平衡控制的有效性。