Quantifiable Frequency Support from Grid-Forming Converters with DC-side Current Limits in Grids with Synchronous Generators

Sayan Samanta, N. Chaudhuri, C. Lagoa
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引用次数: 1

Abstract

A decentralized supplementary control for quantifiable primary frequency support from renewable generation interfaced with class-A grid-forming converters (GFCs) under dc-side current limitation is proposed. GFCs regulated by droop, dispatchable virtual oscillator control (dVOC), and virtual synchronous machine (VSM) strategies belong to this class. The approach requires communication of frequency measurements of GFCs from adjacent buses. The proposed controller guarantees asymptotic stability of power grids with generic configurations that include multiple synchronous generators (SGs) and GFCs under dc power flow approximation and a mild assumption on center-of-inertia based frequency dynamics model. Simulations on a simplified model of a 4-bus system and a detailed phasor model of IEEE 16-machine system show the effectiveness of the proposed approach.
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带同步发电机的电网中具有直流侧限流的成网变流器的可量化频率支持
提出了一种在直流侧电流限制下,可再生能源发电与A类并网变流器(gfc)接口的可量化主频率支持的分散补充控制。由下垂、可调度虚拟振荡器控制(dVOC)和虚拟同步机(VSM)策略调节的gfc就属于这一类。该方法需要从相邻总线上通信GFCs的频率测量值。该控制器在直流潮流近似和基于惯量中心的频率动力学模型的温和假设下,保证了包含多个同步发电机(SGs)和GFCs的通用配置电网的渐近稳定性。通过4总线系统的简化模型和IEEE 16机系统的详细相量模型的仿真验证了该方法的有效性。
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