In this paper, a new predictive control strategy for current source matrix converter (CSMC) is presented. Proposed predictive control strategy allows for creating output voltages with boost type voltage transfer ratio...In this paper, a new predictive control strategy for current source matrix converter (CSMC) is presented. Proposed predictive control strategy allows for creating output voltages with boost type voltage transfer ratio and desired frequency. The description of predictive control circuit of the CSMC is presented. Furthermore the simulation test results to confirm functionality of the proposed control strategy and converter properties under this strategy are shown.展开更多
针对双向隔离型AC-DC矩阵变换器,文中提出一种软开关复合调制策略,其中,前级3-1矩阵式变换电路采用对称双线电压调制法,以提高电压传输比;后级全桥电路采用互补控制,简单易实现;前后级电路之间进行移相控制。通过协调安排前后级脉冲宽...针对双向隔离型AC-DC矩阵变换器,文中提出一种软开关复合调制策略,其中,前级3-1矩阵式变换电路采用对称双线电压调制法,以提高电压传输比;后级全桥电路采用互补控制,简单易实现;前后级电路之间进行移相控制。通过协调安排前后级脉冲宽度分布,使得矩阵变换器中的双向开关在采用简单的两步换流时,可保证全部开关器件实现零电压开关(zero voltage switching,ZVS)换流。仿真和实验结果表明,网侧电流三相平衡正弦,相电流谐波畸变率小于3%,功率因数接近于1,输出电压和电流为稳定直流,电压电流纹波小,变换器中的双向开关和普通开关器件均能实现ZVS换流。在宽负载范围(10%~100%)内效率均保持在94.5%以上,最高效率可达97.74%。因此,采用提出的调制策略可实现双向隔离型AC-DC矩阵变换器功率的稳定传输,在保证良好的输入输出性能的同时,实现了开关器件的零电压换流,具有高效率。展开更多
针对当前新的42V汽车供电系统发展的必然趋势,提出一种基于42V Power Net的车用双向AC-DC矩阵式变换器,代替了传统的PWM整流电路和DC-DC变换器。在新提出的结构中,不再需要大的直流母线电容。三相交流电通过矩阵式变换器的一级变换就可...针对当前新的42V汽车供电系统发展的必然趋势,提出一种基于42V Power Net的车用双向AC-DC矩阵式变换器,代替了传统的PWM整流电路和DC-DC变换器。在新提出的结构中,不再需要大的直流母线电容。三相交流电通过矩阵式变换器的一级变换就可以得到期望输出的42V直流电,能量传输密度比传统整流电路高。本文采用基于间接空间矢量调制的闭环控制策略,表明了其有效性,确保了输出电压的可调节性和在不同负载下高质量的输入电流。展开更多
The modular multilevel matrix converter(M3C)is a potential frequency converter for low-frequency AC transmission.However,capacitor voltage control of high-voltage and largecapacity M3C is more difficult,especially for...The modular multilevel matrix converter(M3C)is a potential frequency converter for low-frequency AC transmission.However,capacitor voltage control of high-voltage and largecapacity M3C is more difficult,especially for voltage balancing between branches.To solve this problem,this paper defines sequence circulating components and theoretically analyzes the influence mechanism of different sequence circulating components on branch capacitor voltage.A fully decoupled branch energy balancing control method based on four groups of sequence circulating components is proposed.This method can control capacitor voltages of nine branches in horizontal,vertical and diagonal directions.Considering influences of both circulating current and voltage,a cross decoupled control is designed to improve control precision.Simulation results are taken from a low-frequency transmission system based on PSCAD/EMTDC,and effectiveness and precision of the proposed branch energy balancing control method are verified in the case of nonuniform parameters and an unbalanced power system.展开更多
GaN (gallium nitride) buck-rectifier has been proposed to realize high power density ISOP (input series and output parallel)-IPOS (input parallel and output series) converter-based dc distribution system. The ul...GaN (gallium nitride) buck-rectifier has been proposed to realize high power density ISOP (input series and output parallel)-IPOS (input parallel and output series) converter-based dc distribution system. The ultra-low loss bi-directional switch can be developed by the GaN power device because of the low on-resistance, the high-speed switching behavior and its own device structure. The buck-rectifier using the GaN bi-directional switches has the potential to achieve higher power density than the commonly utilized boost-rectifier. Availability of the GaN-HEMT (high electron mobility transistor) for the buck rectifier has been verified taking the theoretical limit of the on-resistance and the switching loss energy into account. Design consideration for a high power density buck-rectifier has been also conducted and the application effect of the GaN bidirectional switches has been evaluated quantitatively. The ISOP-IPOS converter-based dc (direct current) distribution system takes full advantage of the buck-rectifier and the rectifier using GaN devices contributes to realizing higher power density dc distribution system.展开更多
文摘In this paper, a new predictive control strategy for current source matrix converter (CSMC) is presented. Proposed predictive control strategy allows for creating output voltages with boost type voltage transfer ratio and desired frequency. The description of predictive control circuit of the CSMC is presented. Furthermore the simulation test results to confirm functionality of the proposed control strategy and converter properties under this strategy are shown.
文摘针对双向隔离型AC-DC矩阵变换器,文中提出一种软开关复合调制策略,其中,前级3-1矩阵式变换电路采用对称双线电压调制法,以提高电压传输比;后级全桥电路采用互补控制,简单易实现;前后级电路之间进行移相控制。通过协调安排前后级脉冲宽度分布,使得矩阵变换器中的双向开关在采用简单的两步换流时,可保证全部开关器件实现零电压开关(zero voltage switching,ZVS)换流。仿真和实验结果表明,网侧电流三相平衡正弦,相电流谐波畸变率小于3%,功率因数接近于1,输出电压和电流为稳定直流,电压电流纹波小,变换器中的双向开关和普通开关器件均能实现ZVS换流。在宽负载范围(10%~100%)内效率均保持在94.5%以上,最高效率可达97.74%。因此,采用提出的调制策略可实现双向隔离型AC-DC矩阵变换器功率的稳定传输,在保证良好的输入输出性能的同时,实现了开关器件的零电压换流,具有高效率。
文摘针对当前新的42V汽车供电系统发展的必然趋势,提出一种基于42V Power Net的车用双向AC-DC矩阵式变换器,代替了传统的PWM整流电路和DC-DC变换器。在新提出的结构中,不再需要大的直流母线电容。三相交流电通过矩阵式变换器的一级变换就可以得到期望输出的42V直流电,能量传输密度比传统整流电路高。本文采用基于间接空间矢量调制的闭环控制策略,表明了其有效性,确保了输出电压的可调节性和在不同负载下高质量的输入电流。
基金supported by National Key R&D Program of China(No.2021YFB2401100).
文摘The modular multilevel matrix converter(M3C)is a potential frequency converter for low-frequency AC transmission.However,capacitor voltage control of high-voltage and largecapacity M3C is more difficult,especially for voltage balancing between branches.To solve this problem,this paper defines sequence circulating components and theoretically analyzes the influence mechanism of different sequence circulating components on branch capacitor voltage.A fully decoupled branch energy balancing control method based on four groups of sequence circulating components is proposed.This method can control capacitor voltages of nine branches in horizontal,vertical and diagonal directions.Considering influences of both circulating current and voltage,a cross decoupled control is designed to improve control precision.Simulation results are taken from a low-frequency transmission system based on PSCAD/EMTDC,and effectiveness and precision of the proposed branch energy balancing control method are verified in the case of nonuniform parameters and an unbalanced power system.
文摘GaN (gallium nitride) buck-rectifier has been proposed to realize high power density ISOP (input series and output parallel)-IPOS (input parallel and output series) converter-based dc distribution system. The ultra-low loss bi-directional switch can be developed by the GaN power device because of the low on-resistance, the high-speed switching behavior and its own device structure. The buck-rectifier using the GaN bi-directional switches has the potential to achieve higher power density than the commonly utilized boost-rectifier. Availability of the GaN-HEMT (high electron mobility transistor) for the buck rectifier has been verified taking the theoretical limit of the on-resistance and the switching loss energy into account. Design consideration for a high power density buck-rectifier has been also conducted and the application effect of the GaN bidirectional switches has been evaluated quantitatively. The ISOP-IPOS converter-based dc (direct current) distribution system takes full advantage of the buck-rectifier and the rectifier using GaN devices contributes to realizing higher power density dc distribution system.