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Three-Party Stop-Wait Quantum Communication Protocol for Data Link Layer Based on GHZ State

机译:基于GHZ状态的数据链路层三方等待量子通信协议

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摘要

Based on the delocalized entanglement correlation of GHZ state in quantum information theory, a three-party stop-wait quantum communication protocol for data link layer is presented. When three sites, Alice, Bob and Charlie, communicate in data link layer, data frame is sent to Bob and Charlie by Alice. When receiving the data frame within the set time, the receivers, Bob and Charlie, return to quantum acknowledgment frames or quantum negative acknowledgement frames via quantum channel. In the proposed protocol, the sender Alice can simultaneously receive and deal with quantum acknowledgment (QACK) frames or quantum negative acknowledgement (QNACK) frames from Bob and Charlie. And due to the transience of transferring quantum information, propagation delay and processing delay among three sites are reduced. As a result, the minimum time span between two successfully delivered data frames can be significantly reduced, the communication time is shortened. It is shown that the proposed protocol enhances the maximum throughout effectively and improves the communication efficiency for data link layer in a multicast communication network.
机译:基于量子信息论中GHZ态的离域纠缠相关性,提出了一种用于数据链路层的三方停止等待量子通信协议。当三个站点Alice,Bob和Charlie在数据链路层进行通信时,Alice将数据帧发送到Bob和Charlie。当在设置的时间内接收到数据帧时,接收机Bob和Charlie会通过量子信道返回到量子确认帧或量子否定确认帧。在提出的协议中,发送方爱丽丝可以同时接收和处理来自Bob和Charlie的量子确认(QACK)帧或量子否定确认(QNACK)帧。并且由于传输量子信息的瞬时性,减少了三个站点之间的传播延迟和处理延迟。结果,可以显着减小两个成功传送的数据帧之间的最小时间跨度,缩短通信时间。结果表明,所提出的协议有效地提高了最大吞吐量,并提高了组播通信网络中数据链路层的通信效率。

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