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Research Article | Open Access

Modeling anomalous diffusion and volatility in the Australian national electricity market using a space-fractional Black-Scholes framework

Doungporn Wiwatanapataphee1( )Yong Hong Wu1Wannika Sawangtong2,3,4Panumart Sawangtong3,4,5
Curtin University, School of Electrical Engineering, Computing and Mathematical Sciences, Perth, Western Australia
Department of Mathematics, Faculty of Science, Mahidol University, Bangkok, Thailand
Research group for fractional calculus theory and applications, Science and Technology Research Institute, King Mongkut's University of Technology North Bangkok, Bangkok, Thailand
Centre of Excellence in Mathematics, MHESI, Bangkok, 10400, Thailand
Department of Mathematics, Faculty of Applied Science, King Mongkut's University of Technology North Bangkok, Bangkok, Thailand
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Abstract

Extreme volatility, price spikes, and complex nonlinear dynamics are characteristics often shown in the electricity market, particularly the Australian national electricity market (NEM). These attributes are usually driven by supply-demand imbalances, renewable energy integration, and regulatory interventions, which make traditional pricing models, such as the Black-Scholes framework, inadequate for capturing key market behaviors like long-memory effects, heavy tails, and volatility clustering. This study developed and applied a fractional Black-Scholes model that integrated space-fractional derivatives to account for memory effects, anomalous diffusion, and extreme price movements. The proposed model was calibrated using historical NEM data, demonstrating significant improvements in the pricing of electricity options. The results suggested that it effectively captured key market behaviors. Overall, the findings offered valuable insights and provided a more accurate representation of the Australian electricity market's distinct dynamics.

CLC number: 26A33, 91G20

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AIMS Mathematics
Pages 12388-12420

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Cite this article:
Wiwatanapataphee D, Wu YH, Sawangtong W, et al. Modeling anomalous diffusion and volatility in the Australian national electricity market using a space-fractional Black-Scholes framework. AIMS Mathematics, 2025, 10(5): 12388-12420. https://doi.org/10.3934/math.2025560

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Received: 21 March 2025
Revised: 14 May 2025
Accepted: 22 May 2025
Published: 15 May 2025
©2025 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)