Abstract
Agent-based simulation models are an important tool to study the effectiveness of policy interventions on the uptake of residential photovoltaic systems by households, a cornerstone of sustainable energy system transition. In order for these models to be trustworthy, they require rigorous validation.However, the canonical approach of validating emulation models through calibration with parameters that minimize the difference of model results and reference data fails when the model is subject to many stochastic influences. The residential photovoltaic diffusion model PVact features numerous stochastic influences that prevent straightforward optimization-driven calibration.From the analysis of the results of a case-study on the cities Dresden and Leipzig (Germany) based on three error metrics (mean average error, root mean square error and cumulative average error), this research identifies a parameter range where stochastic fluctuations exceed differences between results of different parameterization and a minimization-based calibration approach fails.Based on this observation, an approach is developed that aggregates model behavior across multiple simulation runs and parameter combinations to compare results between scenarios representing different future developments or policy interventions of interest.
Original language | English |
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Title of host publication | Proceeding of 2022 18th International Conference on the European Energy Market (EEM) |
Publisher | IEEE |
Publication date | 2022 |
Article number | 22185448 |
DOIs | |
Publication status | Published - 2022 |
Event | 18th International Conference on the European Energy Market - Ljubljana, Slovenia Duration: 13 Sept 2022 → 15 Sept 2022 Conference number: 18 |
Conference
Conference | 18th International Conference on the European Energy Market |
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Number | 18 |
Country/Territory | Slovenia |
City | Ljubljana |
Period | 13/09/2022 → 15/09/2022 |
Series | International Conference on the European Energy Market, EEM |
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ISSN | 2165-4077 |
Keywords
- Agent-based Modeling
- Computer Model Calibration
- Computer Model Validation
- Innovation Diffusion
- Rooftop Photovoltaic Diffusion