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Assessment of Grid-connected Residential PV-Battery Systems in Sweden - A Techno-economic Perspective

机译:瑞典网格连接住宅PV电池系统评估 - 技术经济视角

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Ensuring a secure supply of electricity without harming climate is a key challenge for future power system and many renewables-based cutting-edge technologies are introduced to overcome this challenge. This paper aims to study the grid-connected residential PV-battery system at behind-the-meter scenarios in Sweden from a technical and economic perspective. The system is designed with PV arrays, inverters, Lithium-ion or lead-acid batteries. The optimal PV, lithium-ion and lead-acid battery size are determined at two locations (Arlanda and Karlstad) in Sweden based on the highest value of Net Present Value (NPV), Profitability Index (PI), the lowest value of Levelized cost of energy (LCOE) and payback period considering system losses, electricity market price, cost and PV incentives and a comparison is performed between these two locations against some techno-economic performance metrics for two combinations of PV-battery systems. Then, the best-case energy profile, bill savings, battery performance are also investigated. Finally, the system is simulated using System Advisory Model (SAM), a renewable analysis software from NREL, USA, and is found that the grid-connected PV with lithium-ion battery system is feasible and more economical considering available PV incentives in Sweden.
机译:确保在不伤害气候的情况下确保电力供应是未来电力系统的关键挑战,并引入了许多基于可再生能源的尖端技术来克服这一挑战。本文旨在从技术和经济角度来看,在瑞典的米内情景下研究网格连接的住宅PV电池系统。该系统采用PV阵列,逆变器,锂离子或铅酸电池设计。基于净值(NPV),盈利指数(PI),盈利能力指数(PI),苏丹最高值,最佳PV,锂离子和铅酸蓄电池尺寸在瑞典的两个位置(Arlanda和Karlstad)确定,盈利性指数(PI),较低的成本的最低价值考虑到系统损失,电力市场价格,成本和光伏激励的能源(LCoE)和投资回收期,在这两个地点之间对PV电池系统两种组合的一些技术经济性能指标进行了比较。然后,还研究了最佳的能量曲线,票据节省,电池性能。最后,系统使用系统咨询模型(SAM),来自美国NREL,USE的可再生分析软件进行模拟,并发现具有锂离子电池系统的网格连接的PV是可行的,在瑞典可用的PV激励措施是可行的和更经济的。

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