面向可再生能源系统的协同仿真平台

Shuai Lu, Yan Liu, Da Meng
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引用次数: 9

摘要

为了将风能和太阳能整合到电力系统中,人们提出了储能和需求响应等新技术,以增加系统的灵活性。正在制定相应的控制办法和市场规则,以便在多个时间尺度上更好地管理这些资源。因此,需要能够执行小时调度、小时内调度和自动发电控制模拟的模型和软件工具来测试这些控制方法和评估新的市场规则。在太平洋西北国家实验室,我们开发了一个电力系统小时内运行模拟器(ESIOS)。将该模拟器扩展为服务平台可以使参与探索新模型和控件的更大社区受益,并减少维护计算平台的负担。此外,来自社区用户的反馈和贡献可以帮助进一步改进这个模拟生态系统的功能。在本文中,我们描述了该模拟器的功能。根据我们的经验,我们将讨论将该模拟器转换为集成协作服务平台的体系结构设计视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards a Collaborative Simulation Platform for Renewable Energy Systems
To integrate wind and solar energy in electric systems, new technologies, such as energy storage and demand response, have been proposed to increase system flexibility. Control approaches and market rules are being developed accordingly to better manage these resources in multiple time scales. Therefore, models and software tools capable of performing hourly scheduling, intra-hour dispatch, and automatic generation control simulations are needed for testing these control approaches and for evaluating new market rules. At Pacific Northwest National Laboratory, we have developed an Electric System Intra-Hour Operation Simulator (ESIOS). Expanding this simulator as a service platform can benefit a larger community involved in exploring new models and controls and reducing the burden of maintaining a computing platform. Moreover the feedback and contribution from community users can help further improve the features of this simulation ecosystem. In this paper, we describe the function of this simulator. Based on our experience, we discuss the architecture design perspectives for transforming this simulator to an integrated collaborative service platform.
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