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Effect of inertia deficit on power system stability - synthetic inertia concepts analysis

机译:惯性不足对电力系统稳定性的影响-综合惯性概念分析

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The continued expansion of renewable energy sources share in the power generation mix continues to increase the proportion of generating units and consumer systems that are connected to the network via power electronic devices. These producers - in contrast to conventional synchronous generators - and consumers do not have a rotating mass with direct coupling to the electric system, which would be able to support the stability of the system by acting against the frequency changes. A possible solution is the implementation of synthetic (or artificial) inertia in the power control of non-synchronous generators. There is no direct contact between the rotation speed of moving parts and the grid frequency - such as modern wind turbines - of generating units connecting to the network via power electronic converters. Thereby there is no contribution to the net mechanical inertia, i.e., do not contribute to the inertia of the entire system. In the followings this paper will introduce the basic physical problem of the inertia deficit and give an outlook about the nowadays popular approaches. As a result some recommendations and remarks will be defined how to handle this issue effectively.
机译:可再生能源在发电组合中的份额不断扩大,继续增加了通过电力电子设备连接到网络的发电机组和用户系统的比例。与传统的同步发电机相比,这些生产者和用户没有直接耦合到电气系统的旋转质量,通过与频率变化的作用,旋转质量可以支持系统的稳定性。一种可能的解决方案是在非同步发电机的功率控制中实现合成(或人工)惯性。运动部件的转速与通过电力电子转换器连接到电网的发电机组的电网频率(例如现代风力涡轮机)之间没有直接接触。因此,对净机械惯性没有贡献,即对整个系统的惯性没有贡献。在下文中,本文将介绍惯性赤字的基本物理问题,并对当今流行的方法进行展望。结果,将定义一些建议和备注,以说明如何有效处理此问题。

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