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Operation Management of a Hybrid Renewable Energy Systems Base on Multi-Objective Optimal under Uncertainties

机译:不确定条件下基于多目标最优的混合可再生能源系统的运行管理

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As the increasing energy demand and rapid depletion of conventional fossil fuel resources, renewable energy has caused great attention of the public. And hybrid renewable energy system (HRES) is becoming increasingly popular both in theory and engineering due to their integration renewable energy ability. But the uncertainties of wind, solar and load demand make the reliability optimal operation of HRES a very challenging task. This paper established a multi-objective optimal model to deal with the reliability operation optimal of online hybrid system based on a stochastic scenarios simulation approach. The goal is to get the optimal operation strategy to achieve two objectives, economic and renewable power utilization, better below the uncertainty scenarios. To achieve this goal, we design a two-layer multi-scenarios structure to solve the system operate optimal of batteries' work mode and specific power flow in HRES. Considering the uncertainties, we use Monte Carlo simulation to generate various different scenarios. Then we get the multi-objectives solutions of each scenario. Through analyzing the distribution of optimal solutions, we obtain the robustness operation strategy. Finally, comparing with specific scenario's optimal strategy, our optimal solutions are demonstrated to have a better result.
机译:随着能源需求的增加和常规化石燃料资源的迅速枯竭,可再生能源引起了公众的极大关注。混合可再生能源系统(HRES)由于具有集成可再生能源的能力,因此在理论上和工程上都越来越受欢迎。但是,风,太阳能和负载需求的不确定性使HRES的可靠性最佳运行成为一项非常艰巨的任务。基于随机情景仿真方法,建立了在线混合系统可靠性操作最优的多目标最优模型。目标是获得最佳的运营策略,以实现经济和可再生能源利用这两个目标,更好地在不确定性情况下。为了实现这一目标,我们设计了一种两层的多场景结构,以解决系统在HRES中电池最佳工作模式和特定功率流的最佳运行情况。考虑到不确定性,我们使用蒙特卡洛模拟来生成各种不同的情况。然后,我们获得了每种方案的多目标解决方案。通过分析最优解的分布,我们获得了鲁棒性操作策略。最后,与特定场景的最优策略相比,我们的最优解决方案被证明具有更好的效果。

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