一种安全高效的量子密钥传输技术

Md. Armanuzzaman, K. R. Alam, M. Hassan, Y. Morimoto
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引用次数: 3

摘要

本文提出了一种新的数据传输技术,该技术采用量子密钥分发(QKD)方法、一次性垫(OTP)加密技术和霍夫曼编码压缩算法来更安全、高效地传输数据。在传输数据时,保密性、通过压缩减少开销等要求是关键问题。QKD是提供无条件安全的最有前途的方法之一。它依赖于量子物理的不变定律,而不是计算的复杂性作为其保密的基础。为了在发送方和接收方之间建立信任,本文考虑了一个可信中心来分发和验证密钥。它还使用霍夫曼编码——一种无损压缩算法来压缩在经典信道上传输的数据,从而减少了数据传输开销。在数据加密方面,采用OTP技术,使用QKD方法随机生成的密钥,保证了在经典信道上传输数据的保密性。这样就减少了量子信道和经典信道的开销。最后,对该技术的编码-解码和加密-解密所需的时间进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A secure and efficient data transmission technique using quantum key distribution
This paper proposes a new data transmission technique that uses Quantum Key Distribution (QKD) method, One Time Pad (OTP) encryption technique and Huffman encoding compression algorithm to transmit the data more securely and efficiently. While data is transmitted, requirements like secrecy, less overhead through compression etc are crucial issues. QKD is one of the most promising methods which provide unconditional security. It relies upon the immutable laws of quantum physics rather than computational complexity as the basis of its secrecy. To establish the trust between the sender and the receiver, this paper considers a trusted center that distributes and verifies the key. Also it uses Huffman encoding-a lossless compression algorithm to compress the transmitted data over the classical channel that reduces the data transmission overhead. Moreover for data encryption, it applies OTP technique with the key randomly generated by the QKD method that ensures the secrecy of the transmitted data over the classical channel. Thus the overhead of both quantum and classical channels are reduced. Finally the time requirements for encoding-decoding and encryption-decryption for the proposed technique are evaluated.
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