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Optimal generation scheduling for a deep-water semi-submersible drilling platform with uncertain renewable power generation and loads

机译:深水半潜水钻井平台具有不确定可再生能源和负荷的最佳发电调度

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摘要

Owing to the depletion of oil reserves and the low efficiency of traditional deep-water semi-submersible drilling platforms, the application of photovoltaic generation and energy storage systems in marine power systems has been increasingly attracting attention. However, the intermittent and uncertain nature of solar energy brings crucial challenges in maintaining stable and sustainable operations. Furthermore, unlike land-based power systems, the deep-water semi-submersible drilling platform depends on a dynamic positioning system to be fixed in an area of deep water for producing oil, but irregular and stochastic waves make the outputs of a dynamic positioning system uncertain, increasing the difficulty and complexity of energy management. This paper develops a novel hybrid day-ahead probabilistic scheduling method to reduce the total fuel cost of the whole system and improve the energy efficiency; the method combines Taguchi's orthogonal algorithm with particle swarm optimization and a probabilistic load flow method. A detailed model of the deep-water semi-submersible drilling platform is established to validate the proposed method, which is compared with various classical methods. With the help of the proposed method, the total operation cost and greenhouse gas emissions are reduced from $7562.52 to $7333.68, and from 18.95 tons to 16.81 tons, respectively. Furthermore, compared to the two-point estimation method, the experimental times drops by half, which minimizes the computational burden. The simulation results clearly demonstrate the necessity for day-ahead energy scheduling, and the advantages of the proposed method. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于石油储备的消耗和传统深水半潜水钻井平台的低效率,光伏发电和储能系统在海洋电力系统中的应用越来越受到关注。然而,太阳能的间歇性和不确定性质在维持稳定和可持续的操作方面给出了至关重要的挑战。此外,与陆基电力系统不同,深水半潜式钻井平台取决于动态定位系统固定在用于生产油的深水区域中,但是不规则和随机波使动态定位系统的输出产生动态定位系统不确定,提高能源管理的难度和复杂性。本文开发了一种新型混合日前概率调度方法,以降低整个系统的总燃料成本,提高能源效率;该方法将Taguchi的正交算法与粒子群优化和概率负载流法相结合。建立了深水半潜式钻井平台的详细模型,以验证所提出的方法,与各种古典方法进行比较。借助拟议的方法,总运营成本和温室气体排放量从7562.52美元降至7333.68美元,分别为18.95吨至16.81吨。此外,与两点估计方法相比,实验时间下降了一半,最小化计算负担。仿真结果清楚地证明了日前能源调度的必要性,以及所提出的方法的优点。 (c)2019 Elsevier Ltd.保留所有权利。

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