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Research on forced oscillations disturbance source locating through an energy approach

机译:基于能量法的强迫振荡扰动源定位研究

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Low-frequency oscillations (LFOs) are inherent phenomena of modern interconnected electrical power systems, essentially caused by the continuous exchange of momentum among rotating masses. It is widely recognized that LFOs can be induced by both the occurrence of multiple disturbances and the existence of periodic disturbance sources. LFOs can be classified into negative damped oscillations and forced power oscillations. The former can be suppressed by standard controllers (e.g., power system stabilizers). The latter cannot be eliminated until the disturbance source is removed or isolated. Thus, locating the forced disturbance source promptly and accurately is crucial. In this paper, a traditional energy function, simplified and improved, with a new decomposition way to show the direction of energy flow is proposed. Energy associated with the LFO is decomposed into oscillating component and quasi-steady component at the aim of analyzing the inducing multiple disturbances. The branch energy is hence decomposed into periodic and aperiodic components. By identifying the direction along which the aperiodic component is propagated and dissipated, the periodic forced disturbance source could be located rapidly and accurately. The proposed energy decomposition method provides a novel idea to judge the direction along which the dissipated energy flows. The effectiveness and feasibility of the proposed method were verified by simulation results obtained on an actual large-scale interconnected power grid in China.
机译:低频振荡(LFO)是现代互连电力系统的固有现象,主要是由旋转质量之间的动量连续交换引起的。公认的是,多种干扰的发生和周期性干扰源的存在都可能诱发LFO。 LFO可以分为负阻尼振荡和强制功率振荡。前者可以通过标准控制器(例如电力系统稳定器)来抑制。除非消除或隔离干扰源,否则无法消除后者。因此,及时准确地定位强迫干扰源至关重要。本文对传统的能量函数进行了简化和改进,并提出了一种新的分解方法来表示能量流向。与低频振荡相关的能量被分解为振荡分量和准稳态分量,以分析引起多重干扰的目的。因此,支路能量分解为周期性和非周期性的分量。通过识别非周期性成分的传播和消散方向,可以快速而准确地定位周期性强迫干扰源。所提出的能量分解方法提供了一种新颖的思路来判断耗散能量的流动方向。通过在中国实际的大型互联电网上获得的仿真结果验证了该方法的有效性和可行性。

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