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Eco-design optimisation of an autonomous hybrid wind??photovoltaic system with battery storage

机译:带电池储能的混合动力风光互补光伏系统的生态设计优化

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In this study, a new approach to design an autonomous hybrid wind??photovoltaic (PV)-batteries system is presented in order to assist the designers to take into consideration both the economic and ecological aspects. Primary embodied energy (EE) has been introduced as a new criterion for hybrid systems, designing with the objective to minimise loss of power supply probability (LPSP). For a location, meteorological and load data have been collected and assessed. Then, modelling and primary energy analysis have been achieved for all components of the hybrid system. Finally, an optimal configuration has been carried out using a dynamic model and applying two different algorithms with single and multi-objective optimisation. The methodology has been performed successfully for the sizing of a wind??PV-batteries system to supply at least 95% of the yearly total electric demand of a residential house. The simulation results show that the optimal configuration meets the desired system reliability requirements (LPSP ,5%) with the lowest EE. A life cycle cost analysis has been established at the end of the study to demonstrate the importance of economic considerations.
机译:在这项研究中,提出了一种新的设计自主混合式风能光伏(PV)电池系统的方法,以帮助设计人员同时考虑经济和生态方面。引入一次能源(EE)作为混合系统的新标准,其设计目的是最大程度地减少电源供应概率(LPSP)的损失。对于某个位置,已经收集并评估了气象和负荷数据。然后,对混合动力系统的所有组件都进行了建模和一次能源分析。最后,使用动态模型并采用两种不同的算法进行单目标和多目标优化,从而实现了最佳配置。该方法已成功执行,用于确定风能PV电池系统的大小,以至少满足住宅每年总电力需求的95%。仿真结果表明,最佳配置以最低的EE满足了所需的系统可靠性要求(LPSP为5%)。在研究结束时建立了生命周期成本分析,以证明经济考虑的重要性。

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