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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Day-ahead stochastic scheduling of integrated multi-energy system for flexibility synergy and uncertainty balancing
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Day-ahead stochastic scheduling of integrated multi-energy system for flexibility synergy and uncertainty balancing

机译:集成多能量系统的日期随机调度,以实现灵活性协同和不确定性平衡

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Secure operation of the power system is challenged by the high level of uncertainty and fluctuation introduced by renewable energy sources. More flexibility is needed to cope with the uncertainty and improve the utilization of renewable energy. A prominent solution to provide flexibility, and simultaneously increase the efficiency of the system, is the integration of different energy sectors. This paper proposes a two-stage stochastic scheduling scheme of an integrated multi-energy system, which considers the wind power uncertainty and the synergy of different energy sectors to achieve the optimal economic operation of the whole system with minimum curtailment of wind power. In the first stage, energy and reserve scheduling of generating units is performed, while accommodation of wind power production is realized through reserves in the second stage. In the proposed scheme, the electric power system, natural gas system, and district heating system are coordinated to achieve more flexibility, both in the day-ahead and real-time stage. The stochasticity of the wind power uncertainty is represented by realistic scenarios with corresponding probabilities, which are obtained from a scenario generation algorithm based on historical observations taking into account the temporal correlation of wind power. The simulation results on a small-scale test system show that both, the economic efficiency and wind power utilization, have been improved with more flexibility and more reliable scenario set. It is shown, that the total system cost is reduced and reserves are optimized. (C) 2020 Elsevier Ltd. All rights reserved.
机译:通过可再生能源引入的高水平的不确定度和波动挑战电力系统的安全操作。需要更具灵活性来应对不确定性并改善可再生能源的利用。一个突出的解决方案,以提供灵活性,同时提高系统的效率,是不同能源部门的集成。本文提出了一种集成多能量系统的两阶段随机调度方案,该方案考虑了风电不确定性和不同能源部门的协同作用,实现了全系统的最佳经济运行,最短的风力削减了风力。在第一阶段,执行生成单元的能量和储备调度,同时通过第二阶段的储备实现风力发电的容纳。在所提出的方案中,电力系统,天然气系统和地区供暖系统协调,以实现更大的灵活性,无论是在前方和实时阶段。风能不确定性的随机性由具有相应概率的现实场景表示,这是从基于历史观察的场景生成算法获得,考虑到风力的时间相关性。小型测试系统的仿真结果表明,经济效率和风电利用率都得到了更大的灵活性和更可靠的场景集。结果显示,减少了总系统成本,并优化了储备。 (c)2020 elestvier有限公司保留所有权利。

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