Conference Agenda
Overview and details of the sessions of this conference. Please select a date or location to show only sessions at that day or location. Please select a single session for detailed view (with abstracts and downloads if available).
Please note that all times are shown in the time zone of the conference. The current conference time is: 24th Aug 2026, 05:33:00am America, Santiago
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Daily Overview |
| Session | |
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7A: Mechanical Virtual location: VIRTUAL: Agora Meetings | |
| Presentation 4 | |
5:34pm - 5:42pm
Optimization of Frequency Regulation Using a PID Controller Tuned via the Grey Wolf Optimizer Applied to the Isolated Limbani Microgrid Universidad Nacional del Altiplano - (PE), Perú The isolated hydropower plant of Limbani, located in Puno, operates in a non-interconnected system with low inertia and high sensitivity to load disturbances and variability in renewable generation. This work evaluates, through simulation, the hydro–photovoltaic hybridization of the system and proposes a frequency regulation strategy based on a PID controller tuned offline using the Grey Wolf Optimizer (GWO), comparing its performance with the classical Ziegler–Nichols tuning. The dynamic model incorporates the turbine–penstock interaction, including water-hammer effects, and uses an aggregated inertia representative of high renewable penetration; photovoltaic power is modeled as injected power with a first-order dynamic delay. The tuning is formulated as an optimization problem that minimizes the ITAE index and introduces penalties for frequency band violations, implemented under a simulation framework with the controller embedded in the model loop. Validation considers a 20% load increase, loss of photovoltaic generation, and continuous 24-hour operation with a demand peak between 18:00 and 21:00. Compared with Ziegler–Nichols, the GWO-tuned PID reduces ITAE by 47.5%, control effort by 34.3%, and settling time by 62%, improves the frequency nadir from 58.80 to 59.35 Hz, and reduces maximum overshoot, maintaining 60 ± 0.05 Hz during daily operation. | |
