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March 27, 2026Energies4 citationsOpen Access

Freezers in Residential Buildings as a Source of Power Grid Frequency Regulation in Response to the Demand for Innovation Within the Smart City Concept: Thermal–Electric Modeling, Technical Potential and Operational Challenges

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WLWojciech LewickiHÇHasan Hüseyin ÇobanFMFederico Minelli

Key Points

  • The research aims to evaluate the feasibility of using domestic freezers for frequency regulation in the power grid.
  • Developed a dynamic thermal-electric model to simulate freezer behavior
  • Assessed responses to frequency deviations in grid conditions
  • Analyzed 100,000 freezers and extrapolated to national estimates
  • Identified key factors affecting regulation capacity like duty cycle and temperature range
  • The model shows that freezers can provide about 3.2 MW of down-regulation
  • Extrapolated to 4.7 million freezers, this could yield 150-225 MW potential
  • Effective frequency control was achieved, but issues of cycle synchronization arose
  • Randomized reconnection delays were recommended to improve stability

Abstract

This study assesses the technical feasibility of utilizing aggregated domestic freezers in Turkey as a distributed resource for frequency regulation. A dynamic thermal–electrical model was developed to simulate freezer responses under frequency deviation scenarios representative of real-world grid conditions. The modeled sample of 100,000 deep freezers (80 W each) can deliver approximately 3.2 MW of instantaneous down-regulation under a 40% initial duty cycle. Extrapolating to the estimated 4.7 million eligible freezers nationwide yields a total potential headroom of roughly 150–225 MW, depending on duty-cycle assumptions. The compressor duty cycle and allowable temperature range were identified as key factors influencing both regulation capacity and endurance. Although linear reference temperature control enabled effective participation in FCR-N within the simulated timeframes, it also led to cycle synchronization and peak loads following disturbances. Implementing strategies such as randomized reconnection delays could mitigate these effects. The wide availability of domestic freezers, minimal consumer impact, and broad geographic distribution suggest that this resource represents a promising complement to existing frequency regulation assets, particularly in enhancing grid stability amid increasing renewable energy penetration.

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Cite This Study

Lewicki et al. (2026) studied this question.

synapsesocial.com/papers/69c61fd715a0a509bde184cdhttps://doi.org/10.3390/en19071608
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