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Reliability evaluation and thermal design of medium-voltage converter for underwater long-distance high-voltage direct current transmission system

机译:水下长距离高压直流传动系统中电压转换器的可靠性评估和热设计

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摘要

Underwater long-distance high-voltage direct current transmission system can provide long-term, reliable, and sustainable energy for ocean observatories system which has higher reliability requirement than onshore or conventional underwater equipment. As the main network point for high-voltage direct current transmission system, medium-voltage converter of the primary node is at the top layer of power supply chain and its reliability will directly affect the reliability of high-voltage direct current transmission system. Based on a 2.5 kW medium-voltage converter, this study proposes a method to evaluate the reliability of medium-voltage converter with accuracy using the lifetime model of switch by analysis of component junction temperature providing theoretical foundation and technical guidance for medium-voltage converter design. Owing to the high power density of medium-voltage converter, the heat dissipation space is restricted to pressure vessel. This study proposes a thermal design method to ensure normal operation condition within appropriate temperature for medium-voltage converter and verified using ANSYS finite element analysis software.
机译:水下长距离高压直流传输系统可为海洋观察系统提供长期,可靠和可持续的能源,该系统具有比陆上或传统水下设备更高的可靠性要求。作为高压直流传输系统的主要网络点,主节点的中压转换器位于电源链顶部,其可靠性将直接影响高压直流传输系统的可靠性。本研究基于2.5千瓦中压转换器,提出了一种方法来评估中压转换器的可靠性,并通过分析组成结温提供了用于中压转换器设计的理论基础和技术指导的寿命模型。由于中压转换器的高功率密度,散热空间限于压力容器。本研究提出了一种热设计方法,以确保正常运行条件在适当的温度下进行中压转换器,并使用ANSYS有限元分析软件验证。

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