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首页> 外文期刊>Electric power systems research >Performance of multi-scenario equivalent hydropower models
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Performance of multi-scenario equivalent hydropower models

机译:多场景等效水电型号的性能

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Simulations and analysis of large hydro-thermal power systems easily become computationally heavy without simplifications of the system at hand. Hydropower, in particular, presents a challenge as complex river systems add a large amount of variables and linked constraints to the analysis. A possible simplification is to use aggregated Equivalent models for different parts of the hydrosystem which give similar results, with respect to e.g. power production, as a more detailed description of the Original system. In this paper, novel linear multi-scenario Equivalent models for hourly simulations of nonlinear hydropower systems are developed and their performance investigated. The new models consider multiple scenarios for inflow, price and start resp. end content in the reservoirs as well as reserves for balancing capacity. The performance analysis is based on case studies over Swedish hydropower systems located in the electricity trading area SE1. The average relative error in power production is 9-15% and the computation time is reduced from 9 hours to between 0.4 and 36 seconds.
机译:大型水热动力系统的仿真和分析容易变得沉重,无需简化系统。特别是水电,特别是复杂的河流系统为分析增加了大量变量和连接的约束。可能的简化是为加氢系统的不同部分使用聚合的等效模型,其相对于例如,提供类似的结果。电力生产,作为原始系统的更详细描述。本文开发了用于每小时模拟非线性水电系统的新型线性多场景等效模型及其研究。新模型考虑了流入,价格和开始的多种情况。储存器中的结束内容以及用于平衡容量的储备。性能分析基于瑞典水电系统的案例研究,位于电力交易区SE1中。电力生产中的平均相对误差为9-15%,计算时间从9小时减少到0.4到36秒之间。

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