We consider covert communication, i.e., hiding the presence of communication from an adversary for multiple-input multiple-output (MIMO) additive white Gaussian noise (AWGN) channels. We characterize the maximum covert coding rate under a variety of settings, including different regimes where either the number of transmit antennas or the blocklength is scaled up. We show that a non-zero covert capacity can be achieved in the massive MIMO regime in which the number of transmit antennas scales up but under specific conditions. Under such conditions, we show that the covert capacity of MIMO AWGN channels converges the capacity of MIMO AWGN channels. Furthermore, we derive the order-optimal scaling of the number of covert bits in the regime where the covert capacity is zero. We provide an insightful comparative analysis of different cases in which secrecy and energy-undetectability constraints are imposed separately or jointly.
翻译:我们考虑隐蔽通信,即隐藏来自多个投入多输出的对手(MIMO)的通信,用于多重投入多输出的添加型白高斯噪音(AWGN)渠道。我们确定各种环境中的最大隐蔽编码率,包括不同制度,即传输天线的数量或轮廓长度增加;我们表明在大型的MIMO制度中可以实现非零隐蔽能力,在这种制度下,传输天线的数量扩大,但在特定条件下,传输天线的数量可以达到非零隐蔽能力。在这种条件下,我们表明MOIMO AWGN渠道的隐蔽能力与MOIMO AWGN渠道的能力汇合。此外,我们还得出隐蔽能力为零的系统内秘密位数的顺序优化比例。我们对单独或联合实施保密和能源无能限制的不同案例进行了有洞察的比较分析。