4.6 Article

Double auction mechanisms in edge computing resource allocation for blockchain networks

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SPRINGER
DOI: 10.1007/s10586-023-04129-0

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Blockchain; Edge computing; Double auction; Resource allocation; Pricing

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This paper proposes a double auction model to address the issue of edge computing resource allocation in blockchain networks. The proposed mechanisms, TDAMB and DAMCV, have been shown to have good effects on edge computing resource allocation in blockchain networks.
Blockchain, a promising technology, has been extensively applied in numerous fields, such as network security, finance, and medical care. However, due to the low power consumption and weak computing power of the mobile environment, the application of blockchain in this environment still faces many challenges. Therefore, edge computing has been introduced to improve the computing power of mobile devices and encourage more mobile edge devices to join the blockchain network. In this paper, we propose a double auction model to address the issue of edge computing resource allocation in blockchain networks. Based on this auction model, we first propose a truthful double auction mechanism based on breakeven (TDAMB) to determine matched pairs of edge computing service providers (ECSPs) and miners. Furthermore, to improve the system efficiency, we propose a double auction mechanism based on a critical value (DAMCV). We also theoretically analyze the individual rationality, budget balance and truthfulness of the proposed mechanisms. Extensive experiments show that TDAMB and DAMCV have good effects on edge computing resource allocation in blockchain networks.

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