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Active Control of DC Fault Currents in DC Solid-State Transformers During Ride-Through Operation of Multi-Terminal HVDC Systems

机译:多端子HVDC系统的直通式运行期间DC固态变压器中DC故障电流的主动控制

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摘要

When a pole-to-pole dc fault occurs in a multi-terminal HVDC system, it is desirable that the stations and dc solid-state transformers on healthy cables continue contributing to power transfer, rather than blocking. To reduce the fault current of a modular multilevel-converter-based dc solid-state transformer, active fault current control is proposed, where the dc and ac components of fault arm currents are regulated independently. By dynamically regulating the dc offset of the arm voltage rather than being set at half the rated dc voltage, the dc component in the fault current is reduced significantly. Additionally, reduced ac voltage operation of the dc solid-state transformer during the fault is proposed, where the ac voltage of transformer is actively limited in the controllable range of both converters in the transformer to effectively suppress the ac component of the fault current. The fault arm current peak and the energy absorbed by the surge arrester in the dc circuit breakers are reduced by 31.8% and 4.9%, respectively, thereby lowering the capacities of switching devices and circuit breakers. Alternatively, with the same fault current level, the dc-link node inductance can be halved by using the proposed control, yielding lowered cost and volume. The novel active fault current control mechanism and the necessary control strategy are presented and simulation results confirm its feasibility.
机译:当多端子HVDC系统中发生极间直流故障时,希望健康电缆上的站和直流固态变压器继续有助于功率传输,而不是阻塞。为了减少模块化的基于多电平转换器的直流固态变压器的故障电流,提出了有源故障电流控制,其中故障臂电流的直流和交流分量是独立调节的。通过动态调节臂电压的直流偏移而不是将其设置为额定直流电压的一半,故障电流中的直流分量将大大降低。另外,提出了在故障期间降低直流固态变压器的交流电压操作,其中将变压器的交流电压主动限制在变压器中两个转换器的可控制范围内,以有效地抑制故障电流的交流分量。故障臂电流峰值和直流断路器中的电涌放电器吸收的能量分别降低了31.8%和4.9%,从而降低了开关设备和断路器的容量。或者,在相同的故障电流水平下,通过使用建议的控制,直流链路节点电感可以减半,从而降低了成本和体积。提出了新颖的有源故障电流控制机制和必要的控制策略,仿真结果验证了其可行性。

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