Gas Fees on the Ethereum Blockchain: From Foundations to Derivatives Valuations

Fuente: arXiv
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Autori principali: Meister, Bernhard K, Price, Henry CW
Natura: Preprint
Pubblicazione: 2024
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author Meister, Bernhard K
Price, Henry CW
author_facet Meister, Bernhard K
Price, Henry CW
contents The gas fee, paid for inclusion in the blockchain, is analyzed in two parts. First, we consider how effort in terms of resources required to process and store a transaction turns into a gas limit, which, through a fee, comprised of the base and priority fee in the current version of Ethereum, is converted into the cost paid by the user. We adhere closely to the Ethereum protocol to simplify the analysis and to constrain the design choices when considering multidimensional gas. Second, we assume that the gas price is given deus ex machina by a fractional Ornstein-Uhlenbeck process and evaluate various derivatives. These contracts can, for example, mitigate gas cost volatility. The ability to price and trade forwards besides the existing spot inclusion into the blockchain could enable users to hedge against future cost fluctuations. Overall, this paper offers a comprehensive analysis of gas fee dynamics on the Ethereum blockchain, integrating supply-side constraints with demand-side modelling to enhance the predictability and stability of transaction costs.
format Preprint
id arxiv_https___arxiv_org_abs_2406_06524
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Gas Fees on the Ethereum Blockchain: From Foundations to Derivatives Valuations
Meister, Bernhard K
Price, Henry CW
Portfolio Management
General Finance
The gas fee, paid for inclusion in the blockchain, is analyzed in two parts. First, we consider how effort in terms of resources required to process and store a transaction turns into a gas limit, which, through a fee, comprised of the base and priority fee in the current version of Ethereum, is converted into the cost paid by the user. We adhere closely to the Ethereum protocol to simplify the analysis and to constrain the design choices when considering multidimensional gas. Second, we assume that the gas price is given deus ex machina by a fractional Ornstein-Uhlenbeck process and evaluate various derivatives. These contracts can, for example, mitigate gas cost volatility. The ability to price and trade forwards besides the existing spot inclusion into the blockchain could enable users to hedge against future cost fluctuations. Overall, this paper offers a comprehensive analysis of gas fee dynamics on the Ethereum blockchain, integrating supply-side constraints with demand-side modelling to enhance the predictability and stability of transaction costs.
title Gas Fees on the Ethereum Blockchain: From Foundations to Derivatives Valuations
topic Portfolio Management
General Finance
url https://arxiv.org/abs/2406.06524