Real-Time Calculation of Power System Loadability Limits

S. Virmani, D. Vickovic, S. Savulescu
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引用次数: 9

Abstract

Determination of loadability limits in real-time is essential for the effective and efficient utilization of the power system network particularly in an open access environment. However, determining these limits in real-time in an energy management system (EMS) has been extremely difficult and off-line studies, time consuming simulations, and the operator's knowledge and experience, have been the basis for determining the limits especially when taking into account stability consideration. Therefore, accurate and reliable estimates of the limits in real-time based on the current system state are highly desirable. In this paper, we describe the theoretical basis for an approach that has been successfully installed and proven in several EMS systems. The approach relies on several distinct theoretical concepts: criterion for assessing the steady-state stability limit, the development of a radial equivalent network to which the steady-state stability limit criterion can be applied, a procedure for determining the "distance" of the current operating state from the stability limit (hence finding the available margin of loading), evaluating the effect of contingencies, and determining the "weak" flow gates (links) in the network. Field experience in NOS BiH (ISO Bosnia and Herzegovina) is also presented.
电力系统负荷极限实时计算
实时确定电力系统的负荷限值对于电网的有效和高效利用至关重要,特别是在开放接入环境下。然而,在能源管理系统(EMS)中实时确定这些极限是非常困难的,离线研究、耗时的模拟以及操作人员的知识和经验是确定极限的基础,特别是在考虑稳定性因素时。因此,基于当前系统状态的实时准确可靠的极限估计是非常需要的。在本文中,我们描述了一种在几个EMS系统中成功安装和验证的方法的理论基础。该方法依赖于几个不同的理论概念:评估稳态稳定极限的标准,可以应用稳态稳定极限标准的径向等效网络的发展,确定当前运行状态与稳定极限的“距离”的程序(从而找到可用的负载余量),评估突发事件的影响,并确定网络中的“弱”流门(链接)。还介绍了波斯尼亚和黑塞哥维那国际标准化组织的实地经验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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