电能路由器(electrical energy router,EER)可实现新能源、储能及多种电能负载的灵活接入,协调控制和运行模式切换是其运行控制的重点。为实现EER运行模式的平稳过渡,降低EER运行模式切换时母线稳压单元控制模式改变导致的切换冲击,首...电能路由器(electrical energy router,EER)可实现新能源、储能及多种电能负载的灵活接入,协调控制和运行模式切换是其运行控制的重点。为实现EER运行模式的平稳过渡,降低EER运行模式切换时母线稳压单元控制模式改变导致的切换冲击,首先分析并网和孤岛两种运行模式切换时的电压扰动机理,研究系统内功率突变以及母线稳压单元控制器的调节过程对系统的影响。然后设计EER模式切换时序,提出一种基于移相比保持器、电流保持器的控制器输出量提前补偿的模式切换协调控制策略,能够实现端口功率的实时平衡,降低模式切换暂态过程中的电压扰动,提升系统的暂态稳定性。最后,通过Matlab/Simulink仿真软件搭建EER仿真模型,验证了所提控制策略的有效性。展开更多
In the light of user-side energy power control requirements, a power control strategy for a household-level EPR based on HES droop control is proposed, focusing on the on-grid, off-grid and seamless switching process....In the light of user-side energy power control requirements, a power control strategy for a household-level EPR based on HES droop control is proposed, focusing on the on-grid, off-grid and seamless switching process. The system operating states are divided based on the DC bus voltage information with one converter used as a slack terminal to stabilize the DC bus voltage and the other converters as power terminals. In the on-grid mode, the GCC and the HES are used as the main control unit to achieve on-grid stable operation, whereas in the off-grid mode, the PV, HES and LC are used as the main control unit at different voltages to achieve stable operation of the island network. Finally, a DC MG system based on a household-level EPR is developed using the PSCAD / EMTDC simulation platform and the results show that the control strategy can effectively adjust the output of each subunit and maintain the stability of the DC bus voltage.展开更多
文摘电能路由器(electrical energy router,EER)可实现新能源、储能及多种电能负载的灵活接入,协调控制和运行模式切换是其运行控制的重点。为实现EER运行模式的平稳过渡,降低EER运行模式切换时母线稳压单元控制模式改变导致的切换冲击,首先分析并网和孤岛两种运行模式切换时的电压扰动机理,研究系统内功率突变以及母线稳压单元控制器的调节过程对系统的影响。然后设计EER模式切换时序,提出一种基于移相比保持器、电流保持器的控制器输出量提前补偿的模式切换协调控制策略,能够实现端口功率的实时平衡,降低模式切换暂态过程中的电压扰动,提升系统的暂态稳定性。最后,通过Matlab/Simulink仿真软件搭建EER仿真模型,验证了所提控制策略的有效性。
基金National Key R&D Program of China(2018YFB0905000)Science and Technology Project of State Grid Corporation of China(SGTJDK00DWJS1800232).
文摘In the light of user-side energy power control requirements, a power control strategy for a household-level EPR based on HES droop control is proposed, focusing on the on-grid, off-grid and seamless switching process. The system operating states are divided based on the DC bus voltage information with one converter used as a slack terminal to stabilize the DC bus voltage and the other converters as power terminals. In the on-grid mode, the GCC and the HES are used as the main control unit to achieve on-grid stable operation, whereas in the off-grid mode, the PV, HES and LC are used as the main control unit at different voltages to achieve stable operation of the island network. Finally, a DC MG system based on a household-level EPR is developed using the PSCAD / EMTDC simulation platform and the results show that the control strategy can effectively adjust the output of each subunit and maintain the stability of the DC bus voltage.