The inter-line dynamic voltage restorer (IDVR) consists of several voltage source inverters connected to different independent distribution feeders with common dc bus. When one of the inverters compensates for volta...The inter-line dynamic voltage restorer (IDVR) consists of several voltage source inverters connected to different independent distribution feeders with common dc bus. When one of the inverters compensates for voltage sag that appears in its feeder (voltage control mode), the other inverters pump the required power into the dc bus (power control mode). Each inverter will have both voltage and power controllers; only one controller is in use during the abnormal conditions according to its feeder state. The voltage controller uses one of the dynamic voltage restoration techniques. In this paper, the in-phase technique is applied and two types of loads are considered (constant impedance and three phase induction motor). Since the voltage restoration process may need real power injection into the distribution system, the power controller injects this power via voltage injection. This voltage injection is simulated by voltage drop across series virtual impedance. A new scheme is proposed to select the impedance value. The impedance value is selected such that the power consumed by this impedance represents the required power to be transferred without perturbing the load voltage. The performance of this system is also studied during voltage swell. A scheme for operation of multi-feeder IDVR system is proposed in this paper. Simulation results substantiate the proposed concept.展开更多
动态电压恢复器(dynamic voltage restorer,DVR)是解决电压暂升暂降的有效途径,保证用户侧敏感负荷的供电质量。文中研究了额定电压10 kV额定补偿容量1 MV·A的动态电压恢复器的系统设计及实验方案,针对系统主电路结构及拓扑、储能...动态电压恢复器(dynamic voltage restorer,DVR)是解决电压暂升暂降的有效途径,保证用户侧敏感负荷的供电质量。文中研究了额定电压10 kV额定补偿容量1 MV·A的动态电压恢复器的系统设计及实验方案,针对系统主电路结构及拓扑、储能选择、滤波器设计、控制策略、工作模式等方面进行了详细的方案设计。对研制的DVR进行了补偿精度及谐波、跌落识别及响应时间测试等实验,结果表明该装置性能优越,响应速度快,补偿精度高,能有效提高供电质量。展开更多
文摘The inter-line dynamic voltage restorer (IDVR) consists of several voltage source inverters connected to different independent distribution feeders with common dc bus. When one of the inverters compensates for voltage sag that appears in its feeder (voltage control mode), the other inverters pump the required power into the dc bus (power control mode). Each inverter will have both voltage and power controllers; only one controller is in use during the abnormal conditions according to its feeder state. The voltage controller uses one of the dynamic voltage restoration techniques. In this paper, the in-phase technique is applied and two types of loads are considered (constant impedance and three phase induction motor). Since the voltage restoration process may need real power injection into the distribution system, the power controller injects this power via voltage injection. This voltage injection is simulated by voltage drop across series virtual impedance. A new scheme is proposed to select the impedance value. The impedance value is selected such that the power consumed by this impedance represents the required power to be transferred without perturbing the load voltage. The performance of this system is also studied during voltage swell. A scheme for operation of multi-feeder IDVR system is proposed in this paper. Simulation results substantiate the proposed concept.
文摘动态电压恢复器(dynamic voltage restorer,DVR)是解决电压暂升暂降的有效途径,保证用户侧敏感负荷的供电质量。文中研究了额定电压10 kV额定补偿容量1 MV·A的动态电压恢复器的系统设计及实验方案,针对系统主电路结构及拓扑、储能选择、滤波器设计、控制策略、工作模式等方面进行了详细的方案设计。对研制的DVR进行了补偿精度及谐波、跌落识别及响应时间测试等实验,结果表明该装置性能优越,响应速度快,补偿精度高,能有效提高供电质量。