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The effect of including power converter losses when modelling energy storage systems: a UK domestic study

机译:英国国内研究在对储能系统建模时将功率转换器损耗包括在内的影响

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摘要

Energy storage systems (ESS) are seen as an increasingly important technology for managing electrical distribution systems, and there is now much research into both the underlying technologies of these systems, and their “optimum” management especially for applications within a single household. Optimum management usually depends on many factors and assumptions, for example what should be optimized (self-consumption of local renewable resources, consumer cost, peak reduction), prediction of local generation and load patterns, and the assumptions concerning the operation of the ESS itself. This paper aims to quantify one of the usual assumptions made (especially by non-electrical engineers) i.e. that the assumption that the power converter in the ESS is 100% efficient does not lead to substantial errors in the ESS performance and cost-benefit analysis. Three different ESS power converter models have been created and their behaviour as part of a house based ESS management system over a one year period has been analysed using five different control approaches, a variety of battery and solar panel sizes and employing a time of use tariff (Economy 7). By observing the ESS charging pattern through the year and monitoring of the annual electricity cost along with the system’s losses for the household, relationships between the battery and PV size, the control algorithms, the electricity cost and the system losses were created.
机译:储能系统(ESS)被视为管理配电系统的一项越来越重要的技术,现在人们对这些系统的基础技术及其“最佳”管理(尤其是针对单个家庭的应用)进行了大量研究。最佳管理通常取决于许多因素和假设,例如应优化的因素(本地可再生资源的自耗,消费者成本,峰值降低),本地发电量和负荷模式的预测以及与ESS本身运行有关的假设。本文旨在量化一个通常的假设(特别是非电气工程师),即ESS中的电源转换器效率为100%的假设不会导致ESS性能和成本效益分析中的重大错误。已经创建了三种不同的ESS电源转换器模型,并使用五种不同的控制方法,各种电池和太阳能电池板尺寸以及采用了使用时间费率,分析了它们作为一年之内基于房屋的ESS管理系统一部分的行为(经济7)。通过观察全年的ESS充电模式并监视年度电费以及家庭的系统损耗,可以创建电池与PV尺寸之间的关系,控制算法,电费和系统损耗。

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