The RTDS-Based Hardware-in-the-Loop (HIL) Testing Framework enables real-time simulation and validation of power-system equipment, controllers, protection systems and grid-interactive devices under realistic operating conditions. The framework facilitates closed-loop testing by interfacing actual hardware with a real-time simulated power-system model.
Key tests covered include:
- Protection Relay Testing: Functional, performance, coordination and dynamic response testing of protection relays.
- Power Plant Controller (PPC) Testing: Validation of active/reactive power control, voltage control, frequency response and grid-code compliance.
- Composite Islanding and Load Management System (CILMS)- testing of Composite Islanding and Load Management Systems (CILMS) to validate islanding detection, load shedding, generation–load balancing, system restoration, and stable operation under grid disturbances.
- Other controllers such as HVDC and FACTS Controller etc.
Hardware-in-the-Loop Testing of Power Plant Controller for Renewable Energy Systems Using RTDS
With the growing integration of renewable energy sources (RES) such as solar PV and wind, centralized Power Plant Controllers (PPCs) play a vital role in maintaining grid stability. PPCs are responsible for ensuring grid code compliance by coordinating the active and reactive power outputs of multiple inverters and Static VAR Generators (SVGs). However, testing these controllers in actual grid environments is often impractical due to safety, cost, and scalability constraints. Real-Time Digital Simulation (RTDS) platforms provide a high-fidelity, hardware-in-the-loop (HIL) environment to thoroughly evaluate PPC performance under a range of dynamic scenarios.
Role of Power Plant Controller (PPC)
- Coordination of active and reactive power outputs from multiple units
- Grid code compliance (e.g., FRT, ramp rate limits, voltage control)
- Interface between RES plant and grid operator
- Control strategies:
- Active power curtailment
- Volt-VAR control
- Frequency-watt droop control
- Dynamic set point tracking
- Active power curtailment
RTDS-Based HIL Testing Framework
Hardware-in-the-Loop (HIL) testing of the controllers using RTDS enables real-time validation of control logic e.g., PPC’s control logic, dynamic performance and grid-interaction behaviour can be checked under realistic and extreme operating conditions before field deployment. It enables precise assessment of PPC control functions such as active/reactive power, voltage and frequency droop, power factor, and redundancy, while ensuring compliance and stability as per IEGC Regulations, 2023.
Hardware-in-the-Loop (HIL) testing of the controllers using RTDS enables real-time validation of control logic e.g., PPC’s control logic, dynamic performance and grid-interaction behaviour can be checked under realistic and extreme operating conditions before field deployment. It enables precise assessment of PPC control functions such as active/reactive power, voltage and frequency droop, power factor, and redundancy, while ensuring compliance and stability as per IEGC Regulations, 2023.
RTDS testing allows repeatable, risk-free analysis, streamlining tuning, detecting issues early, and ensuring reliable integration of inverter-based renewables, protective relays, PPCs, CILMS etc.
Smt. Arun Jothi R
Joint Director / HOD
Power System Division(PSD)
Phone : + 91 80 2207 2445
Mobile: + 91 9481472576
E-Mail : powersystem[at]cpri[dot]in / arunjothi[at]cpri[dot]in