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Modelling distributed photovoltaic system with and without battery storage: A case study in Belem, northern Brazil

机译:带和不带电池存储的分布式光伏系统建模:以巴西北部贝伦为例

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This paper focuses on simulating photovoltaic PV electricity output and the economics analysis of distributed grid-connected systems with and without battery in the city of Belem, northern Brazil. The work used the System Advisor Model to perform all simulations including the financial evaluation which was calculated using the levelised cost of electricity (LCOE), payback period, and net present value (NPV). The electricity output performance was very similar between both systems, though the system without battery storage achieved better results in all technological parameters. Concerning the net metering system, the system without energy storage returned 144.70 kWh to the grid during the first year whereas system with energy storage returned only 6.6 kWh to the grid. The economic analysis demonstrated that the feasibility of the project is influenced by the discount rate and inflation adopted, but mostly by the discount rate. The results point out better real LCOE and net present value on the system without storage. Although real LCOE estimated for the system with storage resulted in higher values than electricity tariff from the concessionaire and negative NPV, the payback and cash flow analysis reveals that the investment on any project is paid in less than 17 years.
机译:本文着重于模拟光伏PV的电力输出以及巴西北部贝伦市有电池和无电池的分布式并网系统的经济分析。该工作使用System Advisor模型执行所有模拟,包括财务评估,该评估是使用平均电费(LCOE),投资回收期和净现值(NPV)计算的。尽管没有电池存储的系统在所有技术参数上均取得了更好的结果,但两个系统之间的电力输出性能非常相似。关于净计量系统,没有储能的系统在第一年向电网返回了144.70 kWh,而有储能的系统仅向电网返回了6.6 kWh。经济分析表明,该项目的可行性受折现率和通货膨胀率的影响,但主要受折现率的影响。结果表明,在没有存储的情况下,系统具有更好的实际LCOE和净现值。尽管对带存储系统的实际LCOE估算得出的价值高于特许公司的电价,且净现值为负,但投资回收期和现金流分析显示,任何项目的投资都在不到17年的时间内支付。

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