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Quantum Key Distribution for Security Guarantees Over Quantum-Repeater-Based QoS-Driven 3D Satellite Networks

机译:基于量子中继器的QoS驱动的3D卫星网络的安全保障量子密钥分布

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In recent years, quantum-based techniques have attracted significant research attention because of its unique advantages on satellite communications, especially for security problem. Security guarantee is one of the most important requirements in QoS-driven 3D satellite networks. Quantum key distribution (QKD) is a methodology for generating and distributing random encryption keys using the principles of quantum physics, which enables two distant communications parties to securely communicate in a way that cannot be eavesdropped on without being detected. Although the QKD method can ensure the absolute security transmission over 3D satellite networks, it imposes many new implementation challenges due to the various limitations on quantum communication over long distances via 3D free space, including quantum channel attenuation, photon-state disruption and vulnerability to noise/interference, laser-beam widening, and constrained security-key generation rate. These problems get even more challenging when QoS provisioning is required for the applications over the 3D satellite networks. To overcome the aforementioned difficulties, we propose the framework to efficiently implement the QKD for security guarantees over quantum-repeater-based QoS-driven 3D satellite networks. First, we develop the quantum-repeater-based QKD satellite network architecture. Then, we design the quantum repeater including the purification scheduling algorithm and the optimal QoS-based repeating-router selection scheme in quantum-repeater-based QKD satellite networks. Finally, the obtained simulations evaluation validate and evaluate our proposed algorithms and schemes.
机译:近年来,由于其对卫星通信的独特优势,因此,基于量子的技术引起了显着的研究,特别是对于安全问题。安全保修是QoS驱动3D卫星网络中最重要的要求之一。量子密钥分布(QKD)是一种使用量子物理原理生成和分配随机加密密钥的方法,这使得两个远程通信方能够以在不检测的情况下不能窃听的方式安全地通信。虽然QKD方法可以保证3D卫星网络上的绝对安全传输,但由于通过3D自由空间的长距离的量子通信的各种限制,包括量子通道衰减,光子状态的中断和噪声漏洞,因此引起了许多新的实施挑战/干扰,激光束加宽,并受约束的安全关键生成率。当3D卫星网络中的应用程序需要QoS供应时,这些问题更具挑战性。为了克服上述困难,我们提出了框架,以有效地实现QKD,以满足量子中继器的QoS驱动的3D卫星网络的安全保障。首先,我们开发了基于量子中继器的QKD卫星网络架构。然后,我们设计量子中继器,包括净化调度算法和基于量子中继器的QKD卫星网络中的基于最佳QoS的重复路由器选择方案。最后,获得的模拟评估验证和评估了我们所提出的算法和方案。

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