The problem of secure source coding with multiple terminals is extended by considering a remote source whose noisy measurements are the correlated random variables used for secure source reconstruction. The main additions to the problem include 1) all terminals noncausally observe a noisy measurement of the remote source; 2) a private key is available to all legitimate terminals; 3) the public communication link between the encoder and decoder is rate-limited; and 4) the secrecy leakage to the eavesdropper is measured with respect to the encoder input, whereas the privacy leakage is measured with respect to the remote source. Exact rate regions are characterized for a lossy source coding problem with a private key, remote source, and decoder side information under security, privacy, communication, and distortion constraints. By replacing the distortion constraint with a reliability constraint, we obtain the exact rate region also for the lossless case. Furthermore, the lossy rate region for scalar discrete-time Gaussian sources and measurement channels is established.
翻译:使用多个终端的安全源编码问题通过考虑一个遥控源的问题而扩大,该远程源的噪音测量是用于安全源重建的关联随机变量。问题的主要补充包括:(1) 所有终端都非因故观测对远程源的噪音测量;(2) 所有合法终端都有私人钥匙;(3) 编码器和编码器之间的公共通信联系利率有限;(4) 窃听器的保密渗漏是按编码器输入量测的,而隐私渗漏是按远程源量测的。Exact 速率区域在安全、隐私、通信和扭曲限制下,都存在与私人钥匙、远程源和解码器侧信息失密的编码问题。通过以可靠性限制取代扭曲限制,我们获得了无损案例的精确速率区域。此外,还建立了离子断层源和测量通道的失传率区域。