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Co-optimized bidding strategy of an integrated wind-thermal-photovoltaic system in deregulated electricity market under uncertainties

机译:不确定条件下电力市场放松管制下风热-光伏发电一体化系统的联合优化投标策略

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摘要

Clean Energy sources, such as wind and solar, have become an inseparable part of today's power grids. However, the intermittent nature of these sources has become the greatest challenge for their owners, which makes the bidding in the restructured electricity market more challenging. Hence, the main goal of this paper is to propose a novel multi-objective bidding strategy framework for a wind-thermal-photovoltaic system in the deregulated electricity market for the first time. Contrary to the existing bidding models, in the proposed model, two objective functions are taken into account that the first one copes with profit maximization while the second objective function concerns with emission minimization of thermal units. The proposed multi-objective optimization problem is solved using the weighted sum approach. The uncertainties associated with electricity market prices and the output power of renewable energy sources are characterized by a set of scenarios. Ultimately, in order to select the best-compromised solution among the obtained Pareto optimal solutions, two diverse approaches are applied. The proposed bidding strategy problem is being formulated and examined in various modes of joint and disjoint operation of dispatchable and non-dispatchable energy sources. Simulation results illustrate that not only the integrated participation of these resources increases the producer's expected profit, but also decreases the amount of the produced pollution by the thermal units. (c) 2019 Elsevier Ltd. All rights reserved.
机译:清洁能源,例如风能和太阳能,已经成为当今电网不可分割的一部分。然而,这些资源的间歇性已经成为其所有者的最大挑战,这使得在重组的电力市场中的投标更具挑战性。因此,本文的主要目标是首次为放松管制的电力市场中的风热-光伏系统提出一种新颖的多目标投标策略框架。与现有的投标模型相反,在提出的模型中,考虑了两个目标函数,第一个目标函数涉及利润最大化,而第二个目标函数涉及热单元的排放最小化。提出的多目标优化问题使用加权和方法解决。与电力市场价格和可再生能源的输出功率相关的不确定性具有一系列情景。最终,为了在获得的帕累托最优解中选择最佳折衷方案,应用了两种不同的方法。拟议的投标策略问题正在以可调度和不可调度能源的联合和不联合操作的各种模式制定和研究。仿真结果表明,这些资源的综合参与不仅增加了生产者的预期利润,而且减少了热力单元产生的污染量。 (c)2019爱思唯尔有限公司。保留所有权利。

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