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Blockchain-Enabled Quantum Signature Scheme for Securing Consumer Electronics-Centric IoT Networks
- Prajapat, Sunil;
- Oun Hwang, Seong;
- Hossain, M. Shamim
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1초록
The rapid proliferation of Consumer-Centric Internet of Things (CCIoT) devices has resulted in massive volumes of data being generated and transmitted across edge and cloud infrastructures. However, limited computational and memory resources, coupled with the vulnerabilities of open communication networks, expose CCIoT ecosystems to severe security threats. With the advent of quantum computing, traditional cryptographic schemes risk becoming obsolete, necessitating the integration of quantum cryptography into edge-assisted CCIoT protocols. In this paper, we propose a blockchain-enabled quantum-designated verifier signature protocol designed to ensure secure data transmission and storage within CCIoT networks. The protocol leverages a private blockchain, where peer nodes generate blocks from service-provider data, thereby enhancing confidentiality and integrity. Informal security verification and informal analysis confirm the robustness of the scheme against both classical and quantum adversaries. Extensive experiments, implemented in Python, evaluate the proposed quantum signature protocol theoretically and practically. The results demonstrate strong encryption performance, achieving a computational cost of 41.5 ms and communication overhead of 834 bits, outperforming recent benchmark schemes. The findings highlight the superior reliability, scalability, and efficiency of our approach, offering a viable quantum security solution for future CCIoT ecosystems.
키워드
- 제목
- Blockchain-Enabled Quantum Signature Scheme for Securing Consumer Electronics-Centric IoT Networks
- 저자
- Prajapat, Sunil; Oun Hwang, Seong; Hossain, M. Shamim
- 발행일
- 2026-02
- 유형
- Article
- 권
- 72
- 호
- 1
- 페이지
- 1904 ~ 1914