研究目的
To develop and demonstrate a novel composite control for PV solar plants operated as PV-STATCOMs to provide simultaneous fast frequency response and power oscillation damping, enhancing grid stability and frequency regulation.
研究成果
The proposed FFR+POD controller effectively reduces frequency deviations, damps power oscillations, and regulates voltage more efficiently than individual FFR or POD controls or conventional droop control. It utilizes PV inverter capacity optimally, providing enhanced grid stability and potential revenue opportunities for PV farms, especially under high power flow conditions.
研究不足
The study is simulation-based and does not account for real-world complexities such as communication delays beyond modeled ones, economic factors for curtailment, or variations in solar irradiance and MPPT algorithms. The dynamic models are limited to 0-10 Hz frequency range, and DC-bus dynamics are not considered.
1:Experimental Design and Method Selection:
The study uses a modified two-area four-machine power system model in MATLAB/Simulink, incorporating WECC generic dynamic models for PV plants. The proposed controller combines FFR (real power modulation) and POD (reactive power modulation) controls applied to the plant level controller.
2:Sample Selection and Data Sources:
The system includes generators with specific exciters and governors, loads with constant components, and a 111 MVA PV system. Data are derived from simulations under various operating conditions.
3:List of Experimental Equipment and Materials:
MATLAB/Simulink software for simulation; no physical equipment is used as it is a simulation-based study.
4:Experimental Procedures and Operational Workflow:
Simulations are conducted for over-frequency and under-frequency events with different load changes (e.g., 25 MW and 200 MW trips or connections) and PV power levels (e.g., 100 MW or 60 MW available power). The controllers are activated or deactivated to compare performance.
5:Data Analysis Methods:
Time-domain simulations analyze frequency deviations, power oscillations, voltage regulation, and PV plant outputs. Eigenvalue analysis and residue-based methods are used for POD controller design.
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