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Design Method of Modular Multilevel Real-time On-line Anti-icing and Ice-melting Equipment Based on Self-ice-melting Conductors

机译:基于自融冰导体的模块化多级实时在线防冰融冰设备设计方法

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The equivalent circuit of self-ice-melting conductor contains large capacitance components and inductance components. When applying alternating current ice-melting power supply, capacitance components and inductance components will consume a large amount of reactive power. In order to avoid reactive power consumption, direct current ice-melting power supply is needed. While the aluminium strand of the self-ice-melting conductor conveys alternating current power, and the steel core voltage is the sum of aluminium strand voltage and a fixed voltage, the voltage difference between the steel core and the aluminium strand will be direct current. The secondary side of alternating current transmission transformer is designed with transmission winding and ice melting winding. The transmission winding is used to generate transmission power and connect to the aluminium strand. Two modular multi-level converters are connected with the ice-melting winding. The first modular multi-level converter converts the output voltage of the ice-melting winding to direct current, and the second modular multi-level converter converts direct current to the sum of the voltage of the aluminum strand and the fixed voltage. By the designed method of this paper, direct current power supply for ice melting can be generated between steel core and aluminium strand to restrain the reactive power consumption.
机译:自融冰导体的等效电路包含大电容成分和电感成分。当使用交流电融冰电源时,电容组件和电感组件将消耗大量无功功率。为了避免无功功率消耗,需要直流融冰电源。自融冰导体的铝绞线传递交流电,而钢芯电压是铝绞线电压和固定电压的总和,而钢芯和铝绞线之间的电压差将是直流电。交流输电变压器的次级侧设计有输电绕组和融冰绕组。传输绕组用于产生传输功率并连接到铝绞线上。两个模块式多电平转换器与融冰绕组相连。第一模块式多电平转换器将融冰绕组的输出电压转换为直流电,第二模块式多电平转换器将直流电转换为铝线束电压和固定电压之和。通过本文的设计方法,可以在钢芯和铝绞线之间产生用于融冰的直流电源,以限制无功功率的消耗。

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