This paper proposes a multiport bidirectional non-isolated converter topology that provides advantages in terms of simultaneous multiple operations,single-stage conversion,high power density and reduced power losses d...This paper proposes a multiport bidirectional non-isolated converter topology that provides advantages in terms of simultaneous multiple operations,single-stage conversion,high power density and reduced power losses due to the lower number of switches.The proposed multiport converter uses a centralized non-linear controller known as a finite control set model predictive controller to manage the flow of power between different ports.It deals with the parallel operation of photovoltaic and battery energy storage systems for stand-alone alternating current(AC)systems.The converter connects the lower voltage battery to the photovoltaic port using a bidirectional buck/boost converter and the photovoltaic port is linked to the stand-alone AC load through a three-phase full-bridge inverter.Each leg of the three-phase converter will act as a bidirectional direct current(DC)/DC converter as well as an inverter simultaneously.Only six switches manage the power transfer between all the connected ports of photovoltaic-battery energy storage system linked to the stand-alone AC load.The proposed multiport converter is mathematically modelled and controlled by a finite control set model predictive controller.The system is validated in simulation(1-kW rating)and experimental environment(200-W rating).The hardware prototype is developed in the laboratory and the controller is implemented on the field-programmable gate array board.Two independent case studies are carried out to validate the efficacy of the system.The first scenario is for a change in solar irradiance,while the second scenario is for a change in the output load.展开更多
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
文摘This paper proposes a multiport bidirectional non-isolated converter topology that provides advantages in terms of simultaneous multiple operations,single-stage conversion,high power density and reduced power losses due to the lower number of switches.The proposed multiport converter uses a centralized non-linear controller known as a finite control set model predictive controller to manage the flow of power between different ports.It deals with the parallel operation of photovoltaic and battery energy storage systems for stand-alone alternating current(AC)systems.The converter connects the lower voltage battery to the photovoltaic port using a bidirectional buck/boost converter and the photovoltaic port is linked to the stand-alone AC load through a three-phase full-bridge inverter.Each leg of the three-phase converter will act as a bidirectional direct current(DC)/DC converter as well as an inverter simultaneously.Only six switches manage the power transfer between all the connected ports of photovoltaic-battery energy storage system linked to the stand-alone AC load.The proposed multiport converter is mathematically modelled and controlled by a finite control set model predictive controller.The system is validated in simulation(1-kW rating)and experimental environment(200-W rating).The hardware prototype is developed in the laboratory and the controller is implemented on the field-programmable gate array board.Two independent case studies are carried out to validate the efficacy of the system.The first scenario is for a change in solar irradiance,while the second scenario is for a change in the output load.
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。