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Effect of distributed generation plants’ automatic controllers on power quality factors

机译:分布式发电厂自动控制器对电能质量因数的影响

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摘要

Currently, energy generation industry transition to a new technological platform based on smart electrical energy systems (EES) is underway, with EES equipped with active-adaptive mains. This platform involves a large-scale use of digital devices and significant electrical energy (EE) generation using distributed generation (DG) plants which are to be created by power consumers. These plants can operate as parts of existing grids, or be pooled in network clusters. To implement smart EES, the development of new approaches is required for production, distribution and EE consumption modes management. The article is dedicated to the issues of DG plants application to raise efficiency of non-traction consumers power supply systems. In this case, a special attention was paid to enhancing the electrical energy quality via application of the DG plant which is controlled by concordantly set generator automatic voltage regulator (AVR) and automatic speed governor (ASG). For optimization and harmonization of AVR and ASG settings a method of nonparametric identification of the ‘turbine-generator’ system was used which can be represented as complex activation functions of main channels and crosslinks of regulators and the generator. The study was carried out in Matlab environment on a created railroad power supply system model. The studies conducted helped to detect that application of DG plants with concordantly set AVR and ASG makes it possible to enhance power quality for non-traction consumers and ensure dynamic stability and resilience of railroad line power supply system.
机译:当前,能源行业正在向基于智能电能系统(EES)的新技术平台过渡,EES配备了有源自适应电源。该平台涉及数字设备的大规模使用以及使用由电力消费者创建的分布式发电(DG)工厂的大量电能(EE)发电。这些工厂可以作为现有网格的一部分运行,也可以集中在网络集群中。为了实施智能EES,需要开发新方法来进行生产,分销和EE消费模式管理。本文专门讨论DG工厂的应用问题,以提高非牵引用户电源系统的效率。在这种情况下,要特别注意通过应用由同步设置的发电机自动电压调节器(AVR)和自动调速器(ASG)控制的DG设备来提高电能质量。为了优化和协调AVR和ASG设置,使用了一种非参数识别“涡轮发电机”系统的方法,该方法可以表示为主要通道的复杂激活功能以及调节器和发电机的交联。该研究是在Matlab环境下基于已创建的铁路供电系统模型进行的。进行的研究有助于发现具有一致设置的AVR和ASG的DG工厂的应用可以提高非牵引用户的电能质量,并确保铁路线供电系统的动态稳定性和弹性。

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