基于模块的风电集成方法以保证电力系统的稳定性

Le Xie, Marija Ilic
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引用次数: 6

摘要

在本文中,我们提出了一个基于模块的电力基础设施建模,特别强调了风能的整合。将每(组)风力发电机定义为一个模块,用其局部变量和模块与系统网络的互联变量表示。因此,对于给定的交互变量变化范围,可以指定每个模块的性能子目标,并确保通过局部感知和驱动来满足局部子目标。该方法与目前风电场集成的离线最坏情况规范相比,提供了一种系统的方法来分析随着风能渗透增加的基础设施动态。可以在风电场和电网之间实现基于网络的交互式协议,以使系统具有预定的性能。推导了传输网络与模块之间的交互协议收敛于系统范围稳定运行的网络性质的充分条件。通过算例说明了风电场与已有系统的集成,具有预先规定的稳定性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A module-based approach to integrating wind power for guaranteed power system stability
In this paper we present a module-based modeling of electricity infrastructure with special emphasis on the wind energy integration. Each (group of) wind generator(s) is defined as a module and is represented in terms of its local variables and the interconnection variables between the module and the system network. Therefore, it is possible to specify the performance sub-objectives of each module for a given range of variations in interaction variables and to ensure that the local sub-objectives are met through local sensing and actuation. This approach, compared with the present off-line worst-case specification for wind farm integration, provides a systematic means of analyzing the infrastructure dynamics with increasing penetration of wind energy. An interactive cyber-based protocol between the wind farm and the grid could be implemented for operating the system with pre-specified performance. Sufficient conditions on network properties are derived under which this interactive protocol between the transmission networks and the modules converges to a system-wide stable operation. An example is shown to demonstrate the integration of wind farm into the existing system with pre-specified stability performance.
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