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Optimization of an Offshore Oilfield Multi-Platform Interconnected Power System Structure

机译:近海油田多平台互连电力系统结构优化

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摘要

In recent years, with regional integrated seabed resource exploitation continuing to expand, offshore oilfield power systems have gradually become networked, forming an offshore oilfield multi-platform interconnected power system. In this paper, a two-level optimization model for offshore oilfield multi-platform interconnected power system structure is developed. The lower-level model uses a minimum cut-load cost model that considers load priority to calculate the power outage losses of all N–1 fault conditions. The reliability assessment method helps to achieve a balance between economy and reliability. Additionally, an optimization model simplification method based on graph theory is proposed, and it uses the minimum cost maximum flow (MCMF) algorithm to optimize the power flow of the grid and narrows the problem’s solution space. At the end of modeling, a parallel global taboo search algorithm is used to reduce the computational time and improve the probability of finding an optimal solution. Investigations of a real offshore oilfield multi-platform power system verify the accuracy of the model, the simplification method and the parallel global taboo search algorithm.
机译:近年来,随着区域集成的海底资源开发持续扩展,海上油田电力系统已逐渐成为网络,形成近海油田多平台互连电力系统。本文开发了一种用于海上油田多平台互连电力系统结构的两级优化模型。较低级别模型使用最小的剪切成本模型,该模型考虑了负载优先级,以计算所有N-1故障情况的耗电损失。可靠性评估方法有助于实现经济性和可靠性之间的平衡。另外,提出了一种基于图形理论的优化模型简化方法,它使用最小成本最大流量(MCMF)算法来优化网格的电源流,并缩小问题的解决方案空间。在建模结束时,并行全局禁忌搜索算法用于减少计算时间并提高找到最佳解决方案的概率。真正的离岸油田多平台电力系统的调查验证了模型的准确性,简化方法和并行全局禁忌搜索算法。

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