Reactive power capacity allocation technology of shore‐based power supply system of offshore oil production platform under different network topology reliability measures

Wenle Song, Lei Wang, Xiangyu Hao, Le Wan, Chenyang Li
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Abstract

To improve the economy of offshore oil production platform shore‐based power transmission mode, the reactive power capacity allocation technology of offshore oil production platform shore‐based power supply system based on different network topology reliability measures was proposed. The optimization model of power supply system network topology and the structure model of voltage source converter high voltage direct current transmission system were established, the start and stop control scheme of flexible direct current (DC) transmission system was designed, and the operation parameters of converter station and DC line were monitored in real time. The topological structure of offshore oil production platform shore‐based power supply system is constructed, the mathematical model of flexible DC transmission system is established when the alternating current side voltage is balanced, the reactive power capacity configuration of offshore oil production platform shore‐based power supply system is optimized, and the life cycle cost results are calculated. The experimental results show that the algorithm proposed in this paper can obtain the optimal solution only after 26 calculations, with high optimization efficiency and good convergence effect. Reactive capacity configuration of shore‐based power supply system for offshore production platform can reduce failure rate and life cycle cost.
不同网络拓扑可靠性措施下海上采油平台岸基供电系统的无功功率容量分配技术
为提高海上采油平台岸基输电模式的经济性,提出了基于不同网络拓扑可靠性措施的海上采油平台岸基供电系统无功容量分配技术。建立了供电系统网络拓扑优化模型和电压源换流高压直流输电系统结构模型,设计了柔性直流输电系统启停控制方案,实时监测了换流站和直流线路的运行参数。构建了海上采油平台岸基供电系统的拓扑结构,建立了交流侧电压平衡时柔性直流输电系统的数学模型,优化了海上采油平台岸基供电系统的无功容量配置,并计算了生命周期成本结果。实验结果表明,本文提出的算法只需经过 26 次计算即可得到最优解,优化效率高,收敛效果好。海上生产平台岸基供电系统的无功容量配置可降低故障率和寿命周期成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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