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A stochastic simulation model for reliable PV system sizing providing for solar radiation fluctuations

机译:提供太阳辐射波动的可靠光伏系统选型的随机模拟模型

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摘要

The large fluctuations observed in the daily solar radiation profiles affect highly the reliability of the PV system sizing. Increasing the reliability of the PV system requires higher installed peak power (P_m) and larger battery storage capacity (C_L). This leads to increased costs, and makes PV technology less competitive. This research paper presents a new stochastic simulation model for stand-alone PV systems, developed to determine the minimum installed P_m and C_L for the PV system to be energy independent. The stochastic simulation model developed, makes use of knowledge acquired from an in-depth statistical analysis of the solar radiation data for the site, and simulates the energy delivered, the excess energy burnt, the load profiles and the state of charge of the battery system for the month the sizing is applied, and the PV system performance for the entire year. The simulation model provides the user with values for the autonomy factor d, simulating PV performance in order to determine the minimum P_m and C_L depending on the requirements of the application, i.e. operation with critical or non-critical loads. The model makes use of NASA's Surface meteorology and Solar Energy database for the years 1990-2004 for various cities in Europe with a different climate. The results obtained with this new methodology indicate a substantial reduction in installed peak power and battery capacity, both for critical and non-critical operation, when compared to conventional approaches applied in PV sizing.
机译:每日太阳辐射剖面中观察到的大波动极大地影响了光伏系统尺寸的可靠性。提高光伏系统的可靠性需要更高的安装峰值功率(P_m)和更大的电池存储容量(C_L)。这导致成本增加,并使光伏技术竞争力下降。本研究论文提出了一种用于独立光伏系统的新的随机仿真模型,该模型用于确定与能源无关的光伏系统的最小安装P_m和C_L。开发了随机模拟模型,该模型利用了从对该地点的太阳辐射数据进行的深入统计分析中获得的知识,并模拟了所输送的能量,燃烧的多余能量,负载曲线以及电池系统的充电状态应用大小调整的月份,以及全年的光伏系统性能。该仿真模型为用户提供自治因子d的值,以模拟PV性能,以便根据应用程序的要求(即在关键或非关键负载下运行)确定最小P_m和C_L。该模型利用了1990年至2004年美国国家航空航天局(NASA)的地表气象和太阳能数据库,这些数据库针对欧洲不同气候的城市。与PV尺寸调整中使用的常规方法相比,使用这种新方法所获得的结果表明,对于关键操作和非关键操作,安装的峰值功率和电池容量均大幅降低。

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