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首页> 外文期刊>Trends in Ecology & Evolution >Comparison of Coupled Nonlinear Oscillator Models for the Transient Response of Power Generating Stations Connected to Low Inertia Systems
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Comparison of Coupled Nonlinear Oscillator Models for the Transient Response of Power Generating Stations Connected to Low Inertia Systems

机译:耦合非线性振荡器模型的比较,用于低惯性系统的发电站瞬态响应

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摘要

Coupled nonlinear oscillators, e.g., Kuramoto models, are commonly used to analyze electrical power systems. The cage model from statistical mechanics has also been used to describe the dynamics of synchronously connected generation stations. Whereas the Kuramoto model is good for describing high inertia grid systems, the cage one allows both high and low inertia grids to be modelled. This is illustrated by comparing both the synchronization time and relaxation towards synchronization of each model by treating their equations of motion in a common framework rooted in the dynamics of many coupled phase oscillators. A solution of these equations via matrix continued fractions is implemented rendering the characteristic relaxation times of a grid-generator system over a wide range of inertia and damping. Following an abrupt change in the dynamical system, the power output and both generator and grid frequencies all exhibit damped oscillations now depending on the (finite) grid inertia. In practical applications, it appears that for a small inertia system the cage model is preferable.
机译:耦合非线性振荡器,例如Kuramoto模型通​​常用于分析电力系统。来自统计机制的笼模型也被用来描述同步连接的发电站的动态。鉴于Kuramoto模型很好地描述高惯性电网系统,则笼子允许建模高惯性网格。这通过将它们的运动方程与在许多耦合相位振荡器的动态的常见框架中的运动方程进行了处理来进行比较来说明这两种朝向每个模型的同步时间和放松来说明。通过矩阵持续分数的这些方程解决这些方程的解决方案在广泛的惯性和阻尼方面实现了网格发电机系统的特征松弛时间。在动态系统的突然变化之后,电源输出和发电机和电网频率都表现出阻尼振荡,这取决于(有限)网格惯性。在实际应用中,似乎对于一个小惯性系统,笼模型是优选的。

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