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Operation strategy of residential centralized photovoltaic system in remote areas

机译:偏远地区居民集中式光伏发电系统的运行策略

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摘要

Photovoltaic (PV) systems have found fairly wide application in remote isolated area. However, each individual PV system usually supplies energy only to one consumer. In such a case we have several consumers that each one of them uses a stand-alone PV system. This situation would expose such stand-alone systems to transient excessive loads larger than the power generated by the PVs, and then the battery is bound to discharge even during the day. For overcoming this problem, we suggest an autonomous centralized PV system, comprising one battery bank and plural subsystems connected to each other. From solar radiation data and load profiles, the performance of the PV centralized system is simulated by using a time step scheme. The advantages of this system are found to be the large charging rate of power, high efficiency, and low cost compared with conventional individual PV systems and hybrid systems. In addition, the economic study shows that the life cycle cost and the price of kilowatt hour generated in the centralized system is lower than that for the individual systems.
机译:光伏(PV)系统已在偏远偏远地区得到相当广泛的应用。但是,每个单独的光伏系统通常仅向一个用户提供能源。在这种情况下,我们有几个消费者,每个消费者使用一个独立的光伏系统。这种情况会使此类独立系统承受瞬时过大的负载,这些负载大于PV产生的功率,因此即使在白天,电池也必定会放电。为了解决这个问题,我们建议使用一个自主的集中式光伏系统,该系统包括一个电池组和多个相互连接的子系统。根据太阳辐射数据和负载曲线,通过使用时间步长方案来模拟PV集中式系统的性能。与常规的单个PV系统和混合系统相比,该系统的优势在于功率的大充电率,高效率和低成本。此外,经济研究表明,集中式系统的生命周期成本和千瓦时价格比单个系统要低。

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