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Optimisation of residential solar PV system rating for minimum payback time using half-hourly profiling

机译:使用半小时分析的最低投资回收时间的住宅太阳能光伏系统优化

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There is increasing interest in the residential load sector in the installation of grid-connected solar photovoltaic (PV) renewable energy sources as means to reduce the cost of electricity imported from the grid. The research presented here proposes a mathematical model used with a direct search methodology to optimize the rating of a solar PV system, with the view to minimize payback time, for a residential system with given load profile. Half-hourly average energy profiles are used to model the solar generation profile and load profile. Results are presented for two case studies, using a representative daily solar generation profile and daily residential load profile. The case studies include determining the optimal PV system rating, i.e. with minimum payback time, for a system with a fixed load profile and for a system where load scheduling optimization is applied. The results show, that in each case, the direct search optimization algorithm can quickly determine the PV system rating with the minimum payback time. The effects of the load profile and solar generation profile characteristics on the payback time are explored using the concept of a solar utilization factor. It is shown that the utilization factor plays a critical role in improving payback time.
机译:在安装网格连接的太阳能光伏(PV)可再生能源的安装中,对住宅负载扇区的兴趣越来越兴趣,作为降低从网格进口的电力成本的手段。这里提出的研究提出了一种与直接搜索方法一起使用的数学模型,以优化太阳能光伏系统的评级,以使回收时间最小化,用于给定负载轮廓的住所系统。半小时平均能量型材用于模拟太阳能发电曲线和负载曲线。结果出现了两种案例研究,使用代表日常太阳能发电曲线和日常住宅载荷概况。案例研究包括确定具有固定负载简档的系统的最佳PV系统评级,即,具有固定负载概况的系统和应用加载调度优化的系统。结果表明,在每种情况下,直接搜索优化算法可以快速确定具有最小投资回收时间的光伏系统等级。利用太阳能利用率的概念探索了负载曲线和太阳能发电曲线特性的影响。结果表明,利用因子在改善投资回收时间方面发挥着关键作用。

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