基于ESS的并网光伏电站投资回收期评估分析方法

G. Bonanno, S. D. Caro, A. Sciammetta, T. Scimone, A. Testa
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引用次数: 3

摘要

住宅用并网光伏电站通常是根据光伏阵列峰值功率、可用预算或可用空间等系统需求,通过确定性方法进行设计的。不幸的是,这些方法只能给出次优结果。更有效的设计技术是那些面向实现给定的性能目标,如最小的回报时间,最小的生命周期成本,或最小的年度电能成本。然而,它们需要非常复杂的优化技术,特别是如果工厂包含能量存储系统。本文提出了一种基于年平均太阳辐射数据和负荷需求的分析方法,以优化为一组住宅负荷服务的并网发电机中的光伏组件阵列和储能系统的尺寸。通过一个数学模型,将年能源成本的变化描述为工厂配置的函数,确定了回款时间较短的配置。该方法可以很容易地修改,以考虑不同的优化目标,以最大的生命周期利润。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Analytic Approach to Pay-Back Time Assessment of Grid-Connected PV Plants with ESS
Grid connected photovoltaic plants for residential applications are normally designed through deterministic methods on the basis of system requirements as: PV array peak power, available budget, or available space. Unfortunately, these approaches give only suboptimal results. More effective design techniques are those oriented to fulfill given performance targets as minimum pay-back time, minimum life cycle cost, or minimum annual electrical energy cost. However, they require very complex optimization techniques, especially if the plant encompasses energy storage systems. An analytic approach is presented in this paper to optimally sizing the photovoltaic module array and the energy storage system in a grid-connected generator serving a set of residential loads, on the basis of annual average solar radiation data and load demand. The configuration with the shorter pay-back time is identified through a mathematical model, describing the variation of the annual energy cost as a function of the plant configuration. The proposed method can be easily modified to take into account different optimization targets, as maximum life-cycle profit.
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