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A novel tree-topology based routing algorithm for partially-trusted QKD networks

机译:一种新颖的基于树形拓扑的部分信任QKD网络路由算法

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For the security requirements of high-speed and large-capacity transmission, quantum key distribution technology plays an important role in optical networks. In the process of deploying QKD networks in the future, the partially- trusted QKD network will be a more realistic scenario. To solve the QKD with an untrusted relay, MDI-QKD protocol is designed, In MDI-QKD, two QKD nodes send the quantum states to the untrusted relay and the measurement device in the untrusted relay measures the received quantum states. Based on the overall feasibility of QKD-integrated optical networks and the common tree topologies in backbone optical networks, this paper proposes a quantum key distribution method and a routing algorithm in a partially-trusted QKD tree-topology network by combining the trusted relay technology and MDI- QKD protocol and considering the quantum key pool. Simulation results show that the proposed TT-AR algorithm is effective for tree topologies.
机译:为了满足高速大容量传输的安全性要求,量子密钥分发技术在光网络中起着重要的作用。在将来部署QKD网络的过程中,部分受信任的QKD网络将是一个更现实的方案。为了解决不信任中继的QKD问题,设计了MDI-QKD协议,在MDI-QKD中,两个QKD节点将量子状态发送给不信任中继,不信任中继中的测量设备对接收到的量子状态进行测量。结合QKD集成光网络的总体可行性和骨干光网络中常见树形拓扑的特点,结合可信中继技术,提出了一种部分受信任的QKD树形拓扑网络中的量子密钥分发方法和路由算法。 MDI-QKD协议并考虑了量子密钥池。仿真结果表明,所提出的TT-AR算法对于树形拓扑结构是有效的。

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