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Nagoya Institute of Technology Uses OPAL-RT to Develop a Novel SVR Control Method Using Solar Radiation Sensors
Nagoya Institute of Technology (NITECH)
Academia, Energy
09 / 27 / 2016

The Company
Nagoya Institute of Technology (NITECH) conducts research on the stability of distribution systems with high levels of photovoltaic generation. NITECH developed a novel SVR control method using solar radiation information to support voltage control in future distribution networks.
The Challenges
- Voltage Fluctuations from PV Integration: The increasing number of photovoltaic generators connected to distribution systems can cause voltage rise and rapid voltage variations.
- High SVC Costs: Large-capacity Static Var Compensators (SVCs) are effective for voltage control but can be costly to deploy.
- SVR Response Delays: Step Voltage Regulators (SVRs) have operational delays that can affect voltage regulation during rapid PV output changes.
The OPAL-RT Solution
- Solar Radiation-Based SVR Control: NITECH developed a control method that uses solar radiation data and voltage measurements to predict future voltage variations.
- Hardware-in-the-Loop Testing: The proposed controller was validated through a HIL setup combining RT-LAB, ARTEMiS, and a DSP-based SVR controller.
- Real-Time Distribution System Simulation: RT-LAB and ARTEMiS enabled real-time simulation of a distribution system model with parallel computation and multiple sampling rates.
The Results
- Predictive Voltage Control: The proposed SVR predicts voltage variations caused by photovoltaic generation and adjusts tap positions in advance.
- Improved Voltage Regulation: The controller compensates rapid voltage changes caused by fluctuations in PV output.
- Reduced SVC Requirements: Improved SVR operation helps reduce the burden placed on SVCs, enabling smaller SVC capacity requirements.
- Validated by Real-Time Simulation: The effectiveness of the proposed SVR controller was confirmed through real-time simulation with a DSP board.



