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Morphological analysis of energy services: Paving the way to quality differentiation in the power sector

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  • Salah, Florian
  • Flath, Christoph M.
  • Schuller, Alexander
  • Will, Christian
  • Weinhardt, Christof

Abstract

The activation of the still predominantly passive demand side is necessary to further guarantee a stable power system in the short term and ensure capacity adequacy in the long run. A system with a high share of generators with nearly no marginal costs requires new services that facilitate transmitting the right economic signals to the system stakeholders. To this end we refine the notion of energy services and propose a framework to systematically design quality differentiated energy services for consumers. This approach facilitates a value-based economic assessment of energy services that deviates from the marginal-cost-paradigm. We further illustrate pricing options for these new energy service products and outline infrastructural needs and additional use case-specific product properties. Moreover, we discuss how the morphological approach can be formalised using a mathematical programming formulation and introduce a complexity measure that facilitates assessing potential adoption obstacles for end consumers. Additionally, we illustrate the practical applicability of these findings by using a prototypical implementation of a decision support system. To foster differentiated energy services, we recommend a more lenient regulatory regime lowering the barriers for new market entrants.

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  • Salah, Florian & Flath, Christoph M. & Schuller, Alexander & Will, Christian & Weinhardt, Christof, 2017. "Morphological analysis of energy services: Paving the way to quality differentiation in the power sector," Energy Policy, Elsevier, vol. 106(C), pages 614-624.
  • Handle: RePEc:eee:enepol:v:106:y:2017:i:c:p:614-624
    DOI: 10.1016/j.enpol.2017.03.024
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    3. Will, Christian & Lehmann, Nico & Baumgartner, Nora & Feurer, Sven & Jochem, Patrick & Fichtner, Wolf, 2022. "Consumer understanding and evaluation of carbon-neutral electric vehicle charging services," Applied Energy, Elsevier, vol. 313(C).
    4. Ute Paukstadt & Jörg Becker, 2021. "From Energy as a Commodity to Energy as a Service—A Morphological Analysis of Smart Energy Services," Schmalenbach Journal of Business Research, Springer, vol. 73(2), pages 207-242, June.
    5. Will, Christian & Zimmermann, Florian & Ensslen, Axel & Fraunholz, Christoph & Jochem, Patrick & Keles, Dogan, 2023. "Can electric vehicle charging be carbon neutral? Uniting smart charging and renewables," Working Paper Series in Production and Energy 69, Karlsruhe Institute of Technology (KIT), Institute for Industrial Production (IIP).
    6. Ute Paukstadt & Jörg Becker, 2021. "Uncovering the business value of the internet of things in the energy domain – a review of smart energy business models," Electronic Markets, Springer;IIM University of St. Gallen, vol. 31(1), pages 51-66, March.
    7. Heilmann, Erik & Klempp, Nikolai & Wetzel, Heike, 2020. "Design of regional flexibility markets for electricity: A product classification framework for and application to German pilot projects," Utilities Policy, Elsevier, vol. 67(C).
    8. Tobias Widmer & Paul Karaenke & Vijayan Sugumaran, 2021. "Two‐sided service markets: Effects of quality differentiation on market efficiency," Managerial and Decision Economics, John Wiley & Sons, Ltd., vol. 42(3), pages 588-604, April.
    9. Saumweber, Andrea & Wederhake, Lars & Cardoso, Gonçalo & Fridgen, Gilbert & Heleno, Miguel, 2021. "Designing Pareto optimal electricity retail rates when utility customers are prosumers," Energy Policy, Elsevier, vol. 156(C).
    10. Ensslen, Axel & Ringler, Philipp & Dörr, Lasse & Jochem, Patrick & Zimmermann, Florian & Fichtner, Wolf, 2018. "Incentivizing smart charging: Modeling charging tariffs for electric vehicles in German and French electricity markets," MPRA Paper 91543, University Library of Munich, Germany, revised 17 Feb 2018.

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