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KI-Glossar

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Model Predictive Control (MPC)

Advanced control strategy that uses a dynamic model of the HVAC system to anticipate future conditions and optimize energy setpoints over a sliding time horizon.

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Reinforcement Learning for HVAC

Application of AI algorithms where an agent learns an optimal control policy (e.g., valve adjustment, fan speed) through trial and error to maximize a defined reward (e.g., comfort - energy cost).

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Building Digital Twin

Dynamic virtual replica of a building and its HVAC systems, fed in real-time by sensors, used to simulate, predict, and optimize energy performance before applying actions in the real world.

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Self-adaptive Regulation

Control system that automatically adjusts its internal parameters (e.g., PID constants) based on environmental variations (weather, occupancy) to maintain optimal performance without manual intervention.

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Thermal Load Forecasting

Use of machine learning models to anticipate a building's heating or cooling demand over a short-term horizon, based on weather forecasts, calendar, and occupancy history.

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Building-to-Vehicle (B2V) Integrated Energy Management

Control strategy that coordinates building HVAC systems with electric vehicle charging/discharging to optimize local energy self-consumption and reduce peak power drawn from the grid.

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Energy Cost Function

Mathematical expression quantifying the energy expenditure of an HVAC system, often weighted by dynamic electricity tariffs, that optimization algorithms seek to minimize.

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Hygrothermal Model

Simulation model that couples heat and moisture transfers in a building envelope, essential for optimizing HVAC systems that handle both temperature and humidity.

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Stochastic Gradient Descent for HVAC

Iterative optimization algorithm used to adjust the parameters of a predictive control model using random subsets of data, accelerating convergence for complex systems.

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Fuzzy Logic for Comfort

Control method that translates subjective comfort variables (e.g., 'a bit warm', 'too humid') into precise control actions on HVAC equipment, mimicking human reasoning.

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Recurrent Neural Networks (RNN) for Energy Time Series

Deep learning architecture specialized in predicting sequential data, such as the power consumption of an HVAC system, by memorizing long-term temporal dependencies.

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Online vs Offline Optimization

Distinction between optimization strategies calculated periodically on historical data (offline) and those adjusted in real-time in response to new measurements (online) for HVAC control.

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Thermal Load Shedding Strategy

AI-controlled action plan that preemptively and temporarily reduces the heating or cooling power to smooth the load curve and reduce costs during peak hours.

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Prediction Horizon

Future time period over which a predictive control algorithm (MPC) performs its optimizations, a crucial trade-off between prediction accuracy and potential for HVAC energy savings.

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State Space Mapping

AI technique that explores and models the set of all possible states of an HVAC system (temperature, pressure, flow rate) to identify optimal trajectories towards a target state of comfort and efficiency.

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