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Dynamic environmental economic dispatch of hybrid renewable energy systems based on tradable green certificates

机译:基于可交易绿色证书的混合可再生能源系统的动态环境经济调度

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摘要

China is accelerating the formulation of a renewable portfolio standard to promote the development and utilization of renewable energy. The implementation of the standard and corresponding tradable green certificates will change the scheduling procedures of thermal power and other renewable energy generators in the electric power system. This paper formulates a multi-objective dynamic economic emission dispatch model for wind-solar-hydro power under tradable green certificates. Weibull, Beta and Gumbel distributions are used to simulate the random behavior of wind, solar and hydro power, respectively, thus taking into account the overestimation and underestimation costs caused by the randomness of renewable energy. Moreover, a new multi-objective moth-flame optimization (MOMFO) based solution is proposed according to the characteristics of the dispatch model. The MOMFO is based on the external elite reservation and Pareto dominance. To improve the search capability, the strategy of average entropy initialization, Levy flight and variable scale chaotic strategy are introduced. A heuristic dynamic relaxation method is proposed, which is used to handle the complex constraints of the model. Finally, the feasibility of the proposed scheduling model and the effectiveness of the algorithm are illustrated using examples of different scheduling situations based on IEEE 39-bus standard system.
机译:中国正在加快制定可再生能源投资组合标准,以促进可再生能源的开发和利用。该标准和相应的可交易绿色证书的实施将改变电力系统中火电和其他可再生能源发电机的调度程序。建立了可交易绿色证书下的风光水电多目标动态经济排放调度模型。 Weibull,Beta和Gumbel分布分别用于模拟风能,太阳能和水力发电的随机行为,因此考虑了由可再生能源的随机性导致的高估和低估成本。此外,根据调度模型的特点,提出了一种新的基于多目标飞蛾优化的解决方案。 MOMFO基于外部精英保留和帕累托优势。为了提高搜索能力,引入了平均熵初始化,征航和变尺度混沌策略。提出了一种启发式动态松弛方法,该方法用于处理模型的复杂约束。最后,以基于IEEE 39总线标准系统的不同调度情况为例,说明了所提出的调度模型的可行性和算法的有效性。

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