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Experimental Quantum-enhanced Cryptographic Remote Control

机译:实验性量子增强密码远程控制

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摘要

The Internet of Things (IoT), as a cutting-edge integrated cross-technology, promises to informationize people’s daily lives, while being threatened by continuous challenges of eavesdropping and tampering. The emerging quantum cryptography, harnessing the random nature of quantum mechanics, may also enable unconditionally secure control network, beyond the applications in secure communications. Here, we present a quantum-enhanced cryptographic remote control scheme that combines quantum randomness and one-time pad algorithm for delivering commands remotely. We experimentally demonstrate this on an unmanned aircraft vehicle (UAV) control system. We precharge quantum random numbers (QRN) into controller and controlee before launching UAV, instead of distributing QRN like standard quantum communication during flight. We statistically verify the randomness of both quantum keys and the converted ciphertexts to check the security capability. All commands in the air are found to be completely chaotic after encryption, and only matched keys on UAV can decipher those commands precisely. In addition, the controlee does not response to the commands that are not or incorrectly encrypted, showing the immunity against interference and decoy. Our work adds true randomness and quantum enhancement into the realm of secure control algorithm in a straightforward and practical fashion, providing a promoted solution for the security of artificial intelligence and IoT.
机译:物联网(IoT)作为一种尖端的集成跨技术,有望在使人们的日常生活信息化的同时,不断受到窃听和篡改的挑战。利用量子力学的随机性,新兴的量子密码术还可以实现无条件的安全控制网络,而不仅仅是安全通信中的应用。在这里,我们提出了一种量子增强的密码远程控制方案,该方案结合了量子随机性和一次性填充算法以远程发送命令。我们在无人飞行器(UAV)控制系统上通过实验证明了这一点。我们在发射无人机之前将量子随机数(QRN)预充入控制者和被控制者,而不是像飞行过程中的标准量子通信那样分配QRN。我们统计验证量子密钥和转换后的密文的随机性,以检查安全性。加密后发现空中的所有命令都是完全混乱的,只有无人机上匹配的密钥才能准确地解密这些命令。此外,被控制者不响应未加密或不正确加密的命令,从而表现出抗干扰和诱骗的能力。我们的工作以一种简单,实用的方式将真正的随机性和量子增强功能添加到安全控制算法领域,为人工智能和物联网的安全性提供了一种改进的解决方案。

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