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LEAST COST PLANNING FOR AUTONOMOUS ENERGY SUPPLY SYSTEMS

机译:自主能源系统的最低成本计划

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TALCO (Technical And Least Cost Optimisation) is a new optimisation tool made to develop technical system designs for autonomous energy supply systems on the basis of a lifetime least cost calculation. TALCO is based on detailed technical models for all components used in autonomous energy supply systems. The models describe the electrical characteristics and the component ageing under operating conditions. Further on all economic parameters (investments, interest rates, maintenance, exchange of components, fuel) of the components are taken into account. Coupled with powerful optimisation algorithms the calculation of the optimum system design is possible. The result are minimum lifetime costs for a given energy demand at a specific location and under given boundary conditions like interest rates or a certain solar fraction. To get a basis for parameters on operating costs, maintenance and repair in autonomous energy supply systems 30 PV hybrid systems were analysed in detail. Data on these systems was collected over more than 120 years of accumulated operation time. Some results of this analysis will be presented within this paper. It turned out from the analysis of the real systems as well as from systematic studies with the least cost optimisation tool TALCO that the costs depend heavily on the boundary conditions (technical, usage and size, economical). But it is obvious from the studies that for systems with less than 15000 kWh annual energy consumption PV-hybrid systems are the most cost effective solution for most applications.
机译:TALCO(技术和最低成本优化)是一种新的优化工具,旨在根据生命周期最低成本计算为自主能源供应系统开发技术系统设计。 TALCO基于详细的技术模型,用于自主能源供应系统中使用的所有组件。这些模型描述了在工作条件下的电气特性和组件老化。此外,还要考虑组件的所有经济参数(投资,利率,维护,组件更换,燃料)。结合强大的优化算法,可以计算出最佳的系统设计。结果是在给定位置和给定边界条件(例如利率或某个太阳能百分比)下,给定能量需求的最小生命周期成本。为了获得运行成本参数的基础,对自主能源供应系统中的维护和维修进行了详细分析,分析了30个PV混合系统。这些系统的数据是在超过120年的累积运行时间中收集的。该分析的一些结果将在本文中介绍。从对实际系统的分析以及使用成本最小化优化工具TALCO进行的系统研究中可以看出,成本在很大程度上取决于边界条件(技术,用途和尺寸,经济性)。但是从研究中可以明显看出,对于年能耗低于15000 kWh的系统,PV混合动力系统是大多数应用中最具成本效益的解决方案。

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