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Connecting the Home Grid to the Public Grid: Field Demonstration of Virtual Synchronous Machines

机译:将归属网格连接到公共网格:虚拟同步机的现场演示

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Power systems are going through a paradigm shift. More and more distributed energy resources (DERs) and loads are being connected to power systems, mostly through power electronic converters. These power electronic converters can be controlled as virtual synchronous machines (VSMs), leading to a unified interface for grid integration. As a result, all active players in a power system can take part in the regulation of system frequency and voltage in a synchronized and democratized (SYNDEM) manner, significantly simplifying system operation and improving grid stability, reliability, resiliency, security, and sustainability. This article presents a pilot smart home grid at the Llano River Field Station, Texas Tech University Center at Junction, that is built according to the SYNDEM grid architecture. The home grid consists of five DER units, including four 3-kW solar units and one 3-kW wind unit with built-in battery storage in each unit, and one energy bridge for grid connection. The energy bridge has two VSMs connected back-to-back with a common dc bus. All the units are equipped with a self-synchronized universal droop controller (SUDC) with many advanced functions, i.e., black-start, grid-forming, self-synchronization without a phase-locked-loop (PLL), voltage and frequency regulation, power sharing, and power quality control. The home grid can work with or without the public grid, with seamless mode change between grid-tied operation and islanded operation. All the functions are achieved without using a communication network; hence, potential cyberattacks can be avoided. Field operation results of the home grid are presented to demonstrate the autonomous operation of the system.
机译:电力系统正在通过范式转换。越来越多的分布式能源资源(DERS)和负载正在连接到电力系统,主要是通过电力电子转换器。这些电力电子转换器可以控制为虚拟同步机(VSM),导致统一接口进行网格集成。因此,电力系统中的所有活动玩家都可以采用同步和民主化(Syndem)方式的系统频率和电压的调节,从而简化系统运行和提高电网稳定性,可靠性,弹性,安全性和可持续性。本文介绍了德克萨斯科技大学中心的Llano River Field Station,德克萨斯州理工大学中心的试点智能家居电网,根据Syndem Grid架构建造。家庭电网由五个DER单位组成,包括四个3千瓦太阳能电脑和一个3千瓦风电脑,每个单元中内置电池存储器,以及一个用于电网连接的能量桥。能量电桥具有两个VSM,其次用公共直流总线连接回来。所有单位都配备了自同步的通用下垂控制器(SUDC),具有许多高级功能,即黑色启动,网格形成,自同步,无锁相环(PLL),电压和频率调节,电力共享和电源质量控制。 Home Grid可以使用或没有公共网格,无缝模式在网格绑定操作和岛状操作之间发生变化。所有功能都在不使用通信网络的情况下实现;因此,可以避免潜在的网络攻击。提出了归属网格的现场操作结果以证明系统的自主操作。

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