论文标题
具有功率限制的通道上的确定性识别
Deterministic Identification Over Channels With Power Constraints
论文作者
论文摘要
识别能力是在编码器和解码器既不随机化的情况下开发的。特别是,为高斯通道的确定性识别(DI)和具有约束的一般离散的无内存通道(DMC)建立了全面表征。最初,AHLSWEDE和DUECK建立了用编码器给出的局部随机性的识别能力,从而在块长度中产生了双重指数的消息。在确定性设置中,与香农的传输范式一样,消息的数量成倍增加,但是可实现的识别率可以显着高于传输速率。 Ahlswede和Dueck进一步指出了DMC确定性设置的能力结果,但没有提供明确的证据。在本文中,为高斯通道和一般DMC提供了详细的证明。不管噪声如何,高斯通道的DI容量是无限的。
The identification capacity is developed without randomization at neither the encoder nor the decoder. In particular, full characterization is established for the deterministic identification (DI) capacity for the Gaussian channel and for the general discrete memoryless channel (DMC) with and without constraints. Originally, Ahlswede and Dueck established the identification capacity with local randomness given at the encoder, resulting in a double exponential number of messages in the block length. In the deterministic setup, the number of messages scales exponentially, as in Shannon's transmission paradigm, but the achievable identification rates can be significantly higher than those of the transmission rates. Ahlswede and Dueck further stated a capacity result for the deterministic setting of a DMC, but did not provide an explicit proof. In this paper, a detailed proof is given for both the Gaussian channel and the general DMC. The DI capacity of a Gaussian channel is infinite regardless of the noise.