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LPD communication when the warden does not know when

机译:当监狱长不知道何时进行LPD通信

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摘要

Unlike standard security methods (e.g. encryption), low probability of detection (LPD) communication does not merely protect the information contained in a transmission from unauthorized access, but prevents the detection of a transmission in the first place. In this work we study the impact of secretly pre-arranging the time of communication. We prove that if Alice has AWGN channels to Bob and the warden, and if she and Bob can choose a single n symbol period slot out of T(n) such slots, keeping the selection secret from the warden (and, thus, forcing him to monitor all T(n) slots), then Alice can reliably transmit O(min{√n log T(n),n}) bits to Bob while keeping the warden's detector ineffective. The result indicates that only an additional log T(n) secret bits need to be exchanged between Alice and Bpob prior to communication to produce a multiplicative gain of √log T(n) in the amount of transmitted covert information.
机译:与标准安全方法(例如,加密)不同,低检测概率(LPD)通信不仅保护了传输中所包含的信息免受未经授权的访问,而且还从一开始就阻止了对传输的检测。在这项工作中,我们研究了秘密预先安排交流时间的影响。我们证明,如果爱丽丝拥有通往鲍勃和监护人的AWGN频道,并且如果她和鲍勃可以从T(n)这样的时隙中选择单个n个符号周期时隙,则对监护人保密该选择(从而迫使他)来监视所有的T(n)个时隙),那么Alice可以可靠地将O(min {√nlog T(n),n})位发送给Bob,同时保持看守的检测器无效。结果表明,在通信之前,仅需在Alice和Bpob之间交换额外的log T(n)个秘密位,即可在传输的隐蔽信息量上产生√logT(n)的乘法增益。

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