Uppsats

Effekttoppsreducering av solcellsintegrerade kylsystem : En fallstudie

Yrkesexamen på avancerad nivå

Uppsala universitet/Solcellsteknik

Publicerad: 2026

Språk: Svenska

Sammanfattning

The increasing demand for cooling in commercial buildings, combined with the growingdeployment of local photovoltaic (PV) systems, has highlighted the need for strategies thatmitigate short-term peaks in net electrical demand. While cooling demand and solar generationcorrelate well on a seasonal basis, rapid fluctuations in solar irradiance generate temporarypeaks in the net load that contribute to demand charges and elevated grid stress. This thesisinvestigates the potential for reducing such peaks through load shifting of the cooling system,utilising the building's thermal inertia as a latent flexibility resource.The study is conducted as a case study of a commercial property in Uppsala, Sweden,equipped with two electrically driven chillers and a PV installation. Operational data with one-minute resolution from the cooling season of 2024 is used to identify the ten most heavilyloaded days. The load shifting problem is formulated as a convex optimisation problemminimising the maximum net power over the day, subject to a total energy conservationconstraint, and is solved for five time windows between one and fifteen minutes. To verifyphysical feasibility, a grey-box thermal model is calibrated against measured data and used tosimulate the indoor temperature response under each optimised scenario.The results show that load shifting consistently reduces the net power peak across all analyseddays, with the average reduction increasing from 28 percent at a one-minute window to 56percent at fifteen minutes. The simulated indoor temperature deviation remains below 0.34°Cacross all scenarios, well within applicable comfort limits. The economic analysis reveals,however, that the technical potential is only partially realised under the prevailing tariff structure,since the power company's demand charge is based on hourly averages. Measurable economicsavings are obtained only at longer time windows, amounting to approximately one thousandSEK over the summer period. The study thereby identifies a structural discrepancy between thetechnical and economic load shifting potential and contributes to the discussion of how futuretariff structures may better reflect the flexibility inherent in buildings' thermal inertia.

Information

Lärosäte / institution
Uppsala universitet/Solcellsteknik
Publiceringsdatum
2026
Uppsatstyp
Yrkesexamen på avancerad nivå
Språk
Svenska

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