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Wiretap Channel with Action-Dependent States and Rate-Limited Feedback

机译:带有动作相关状态的丝网通道和速率有限的反馈

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摘要

We introduce the wiretap channel with action-dependent states and rate-limited feedback. In the new model, the state sequence is dependent on the action sequence which is selected according to the message, and a secure rate-limited feedback link is shared between the transmitter and the receiver. We obtain the capacity-equivocation region and secrecy capacity of such a channel both for the case where the channel inputs depend noncausally on the state sequence and the case where they are restricted to causal dependence. We construct the capacity-achieving coding schemes utilizing Wyner's random binning, Gel'fand and Pinsker’s coding technique, and rate splitting. Furthermore, we compare our results with the existing approaches without feedback, with noiseless feedback, and without action-dependent states. The simulation results show that the secrecy capacity of our model is bigger than that of the first two existed approaches. Besides, it is also shown that, by taking actions to affect the channel states, we guarantee the data integrity of the message transmitted in the two-stage communication systems although the tolerable overhead of transmission time is brought.
机译:我们介绍了具有动作相关状态的丝网通道和速率有限的反馈。在新模型中,状态序列取决于根据消息选择的动作序列,并且在发射机和接收器之间共享安全率限制反馈链路。对于通道输入在状态序列上的情况下,我们获得这种信道的容量和解容量,这些信道输入依赖于状态序列以及它们被限制在因果依赖性的情况。我们构建了利用Wyner的随机分宁,GEL'FAND和PINSKER编码技术和速率分裂的能力实现编码方案。此外,我们将结果与现有方法进行比较,无需反馈,无噪音反馈,无需动作依赖状态。仿真结果表明,我们模型的保密能力大于前两种方法的秘密能力。此外,还示出了,通过采取行动来影响信道状态,我们保证了在两级通信系统中传输的消息的数据完整性,尽管传输时间的容许开销。

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