MODIFICATION OF THE MASTER GENERATOR METHOD USED FOR FREQUENCY AND VOLTAGE CONTROL IN ISOLATED POWER SYSTEMS WITH PARALLEL OPERATING AC GENERATORS

Q3 Energy
L. Mazurenko, O. Dzhura, M. Shykhnenko, A. Kotsiuruba
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引用次数: 0

Abstract

Such methods as droop method, curve shifting method and master-slave method were primarily developed for voltage and frequency regulation in isolated power systems with synchronous generators. In modern power systems induction generators, regulated dump loads, energy storage devices with AC/DC and AC/DC/AC power converters, etc. are used in addition to synchronous generators. The investigation of new configurations of power systems is closely tied with further development of control methods for load sharing and regulation of voltage and frequency of the systems. The article reviews simple-to-implement known control methods used for control of isolated power systems with parallel operated synchronous generators and proposes a modification of the master-slave method for control of power systems with parallel operated synchronous and induction generators, static var compensators, dump loads and energy storage devices with interface power converters. The system “Hydroelectric unit with a synchronous generator - dump load - hydroelectric unit with an induction generator - compensating capacitors - transformer – AC local load" is considered and two techniques for regulation of electric frequency and voltage magnitude in the specified system are presented with accordance to the statements of the proposed modified method. The proposed control algorithm of the dump load frequency controller is in agreement with the control algorithm of the speed controller of the master unit. The functions assigned to the electronic PID speed controller of the master unit are to maintain the electric frequency in the system equal to nominal value and regulate the active power sharing. Verification of the proposed control algorithms for isolated electric power systems was carried out. References 23, figures 5, table 1.
对并联交流发电机的隔离电力系统中用于频率和电压控制的主发电机方法的改进
针对同步发电机隔离电力系统的电压和频率调节,主要开发了下垂法、曲线偏移法和主从法等方法。在现代电力系统中,除了同步发电机之外,还使用感应发电机、调节倾卸负载、具有AC/DC和AC/DC/AC功率转换器的能量存储设备等。电力系统新配置的研究与负载分担和系统电压和频率调节控制方法的进一步发展密切相关。本文回顾了用于控制具有并联同步发电机的孤立电力系统的简单实现的已知控制方法,并提出了对具有并联同步和感应发电机、静态无功补偿器、甩负荷和带接口功率转换器的储能装置的电力系统的主从控制方法的修改。系统“带同步发电机的水力发电机组-甩负荷-带感应发电机的水力发电机-补偿电容器-变压器-交流局部负荷”,并根据所提出的改进方法的陈述,提出了在特定系统中调节电气频率和电压幅值的两种技术。所提出的自卸车频率控制器的控制算法与主机转速控制器的控制方法一致。电子PID的功能主单元的速度控制器用于保持系统中的电频率等于标称值,并调节有功功率共享。对所提出的孤立电力系统控制算法进行了验证。参考文献23,图5,表1。
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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来源期刊
Technical Electrodynamics
Technical Electrodynamics Energy-Energy Engineering and Power Technology
CiteScore
1.80
自引率
0.00%
发文量
72
审稿时长
4 weeks
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