Optimal Dispatching Method of Integrated Energy System Considering Volatility of PV Power

Wenjun Niu, Yanbin Fan, Shan Lu
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Abstract

With the development of society, air pollution and energy consumption have become increasingly serious. How to improve the use of electric energy has become a great challenge. Recently, the emergence of Integrated Energy System (IES) improves the utilization rate of electric energy and realizes the harmonious complementation of multiple electric energy, including consuming and absorbing distributed photovoltaics (DPs). However, the fluctuations in the output power generated by the DP will harm the production scheduling of the IES. How to suppress the fluctuations of the DP has become a problem that must be considered. For the IES of gas and electricity areas with renewable resources, this article creates a solid IES model for gas and electricity areas to improve the operation economy by taking the fixed system cost as the objective function (OF), and the fluctuating cost of power engineering (PE) is considered comprehensively, and the cost of the natural environment. In the OF, the tube bundle is merged, and the CPLEX solver is used to solve the difficulties. Relying on the calculation examples, the rationality of the IES and the output power fluctuations under different indexes are analyzed, and the optimal load rate of each module is obtained, to achieve the purpose of meeting economic standards and smoothing DP fluctuations.
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考虑光伏发电波动性的综合能源系统优化调度方法
随着社会的发展,大气污染和能源消耗日益严重。如何提高电能的利用已成为一个巨大的挑战。近年来,集成能源系统(IES)的出现提高了电能的利用率,实现了多种电能的和谐互补,包括消纳分布式光伏(DPs)。但是,DP输出功率的波动会影响IES的生产调度。如何抑制gdp的波动已成为一个必须考虑的问题。对于具有可再生资源的气电区域IES,本文以固定系统成本为目标函数(of),综合考虑电力工程波动成本(PE)和自然环境成本,建立了气电区域提高运行经济性的实体IES模型。在该算法中,对管束进行合并,并采用CPLEX求解器进行求解。通过算例分析不同指标下IES和输出功率波动的合理性,得出各模块的最优负荷率,达到满足经济标准和平滑DP波动的目的。
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