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Short-Circuit Fault Protection Strategy for High-Power Three-Phase Three-Wire Inverter

机译:大功率三相三线逆变器的短路故障保护策略

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This paper proposes a four-stage fault protection scheme against the short-circuit fault for the high-power three-phase three-wire combined inverter to achieve high reliability. The short-circuit fault on the load side is the focus of this paper, and the short-circuit fault of switching devices is not involved. Based on the synchronous rotating frame, the inverter is controlled as a voltage source in the normal state. When a short-circuit fault (line-to-line fault or balanced three-phase fault) occurs, the hardware-circuit-based hysteresis current control strategy can effectively limit the output currents and protect the switching devices from damage. In the meantime, the software controller detects the fault and switches to the current controlled mode. Under the current controlled state, the inverter behaves as a current source until the short-circuit fault is cleared by the circuit breaker. After clearing the fault, the output voltage recovers quickly from the current controlled state. Therefore, the selective protection is realized and the critical loads can be continuously supplied by the inverter. The operational principle, design consideration, and implementation are discussed in this paper. The simulation and experimental results are provided to verify the validity of theoretical analysis.
机译:针对大功率三相三线组合逆变器,提出了针对短路故障的四阶段故障保护方案,以实现较高的可靠性。负载侧的短路故障是本文的重点,不涉及开关设备的短路故障。基于同步旋转框架,在正常状态下将逆变器作为电压源进行控制。当发生短路故障(线对线故障或三相平衡故障)时,基于硬件电路的磁滞电流控制策略可以有效地限制输出电流,并保护开关器件免受损坏。同时,软件控制器检测到故障并切换到当前控制模式。在电流控制状态下,逆变器将充当电流源,直到断路器清除短路故障为止。清除故障后,输出电压会从电流控制状态快速恢复。因此,实现了选择性保护,并且临界负载可以由逆变器连续提供。本文讨论了工作原理,设计注意事项和实现。仿真和实验结果验证了理论分析的正确性。

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