Framework for system analyses of smart grid solutions with examples from the Gotland case

C. J. Wallnerstrom, L. B. Tjernberg, P. Hilber, J. Jurgensen
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引用次数: 1

Abstract

This paper presents results from a study on the impact of smart grid solutions, which includes development of a generic framework for power system analyses. The study has been performed as one of several independent studies, part of a national governmental task on smart grid in Sweden. A large amount of weather data, along with electricity consumption and wind power generation data, have been analyzed. Achieved results from these initial analyses can be used as reference material and have also been used within case studies presented. The proposed framework is flexible and numerous combinations of scenarios are possible to define. Integration of wind and solar power, analyses of transfer limits using static or dynamic rating and energy storage can be considered as well as weather effects. Results show how power systems can handle more electricity consumption and generation. The study shows that Smart Grid solutions are beneficial for resource efficient electricity grids. Moreover, different risk levels with respect to increased load can be included. Case study results show that energy storages most of the time will be unused, but that they can be used to increase the system reliability.
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智能电网解决方案系统分析框架(以哥特兰案例为例
本文介绍了一项关于智能电网解决方案影响的研究结果,其中包括电力系统分析通用框架的开发。该研究是多项独立研究之一,是瑞典国家政府智能电网任务的一部分。该研究分析了大量的气象数据以及电力消耗和风力发电数据。这些初步分析得出的结果可作为参考材料,并已用于案例研究中。建议的框架非常灵活,可以定义多种情景组合。可以考虑风能和太阳能发电的整合、使用静态或动态额定值和储能的传输限制分析以及天气影响。研究结果表明,电力系统可以处理更多的用电量和发电量。研究表明,智能电网解决方案有利于提高电网的资源效率。此外,还可将增加负荷的不同风险等级纳入其中。案例研究结果表明,储能设备在大多数情况下是闲置的,但可以用来提高系统可靠性。
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