Comparative study of series and parallel schemes for stabilization of a microgrid integrated with a solar thermal cogeneration system using virtual synchronous generator control

Noor Bazila Sharifmuddin Takasago, T. Ise, Tohru Suwa Takasago
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引用次数: 1

Abstract

When a solar thermal cogeneration system is located close to energy consumers, the electricity loss caused by transportation can be largely reduced and the low-temperature thermal energy can be utilized for air conditioning. In this case, a microgrid is introduced to connect a solar thermal cogeneration system and a conventional grid to switch between islanded and grid-connected modes. A new technology for stabilizing the system is required to handle the relatively slow response of the solar thermal cogeneration system for this configuration. Virtual synchronous generator (VSG) control can enhance the power system stability by mimicking steady-state and transient behaviors of synchronous generators (SGs). A swing equation in the VSG control identifies the virtual inertial property of SGs to rapidly adjust to a steady-state frequency. In this work, the transient responses of the VSG series and parallel configurations incorporated into a microgrid are compared. The transient behaviors of rotor angular speed and voltage are simulated for loading and tripping operations. The analysis results suggest that the VSG series configuration suppresses fluctuations better than the parallel configuration and enables stable network operation.
虚拟同步发电机控制微电网与太阳能热电联产系统串联与并联稳定方案的比较研究
当太阳能热电联产系统靠近能源消费者时,可以大大减少运输造成的电力损失,并且可以利用低温热能进行空调。在这种情况下,引入微电网连接太阳能热电联产系统和传统电网,在孤岛模式和并网模式之间切换。需要一种新的稳定系统的技术来处理这种配置的太阳能热电联产系统相对较慢的响应。虚拟同步发电机(VSG)控制通过模拟同步发电机的稳态和暂态行为来提高电力系统的稳定性。VSG控制中的摆动方程确定了VSG的虚惯性特性,可以快速调整到稳态频率。在这项工作中,VSG串联和并联配置并入微电网的瞬态响应进行了比较。对加载和脱扣工况下转子角速度和电压的瞬态特性进行了仿真。分析结果表明,VSG串联配置比并联配置更能抑制波动,使网络稳定运行。
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