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The Secrecy Capacity of Compound Gaussian MIMO Wiretap Channels

机译:复合高斯MIMO窃听通道的保密容量

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Strong secrecy capacity of compound wiretap channels is studied. The known lower bounds for the secrecy capacity of compound finite-state memoryless channels under discrete alphabets are extended to arbitrary uncertainty sets and continuous alphabets under the strong secrecy criterion. The conditions under which these bounds are tight are given. Under the saddle-point condition, the compound secrecy capacity is shown to be equal to that of the worst-case channel. Based on this, the compound Gaussian multiple-input multiple-output wiretap channel is studied under the spectral norm constraint and without the degradedness assumption. First, it is assumed that only the eavesdropper channel is unknown, but is known to have a bounded spectral norm (maximum channel gain). The compound secrecy capacity is established in a closed form and the optimal signaling is identified. The compound capacity equals the worst-case channel capacity and thus establishing the saddle-point property; the optimal signaling is Gaussian and on the eigenvectors of the legitimate channel and the worst-case eavesdropper is isotropic. The eigenmode power allocation somewhat resembles the standard water-filling but is not identical to it. More general uncertainty sets are considered and the existence of a maximum element is shown to be sufficient for a saddle-point to exist, so that signaling on the worst-case channel achieves the compound capacity of the whole class of channels. The case of rank-constrained eavesdropper is considered and the respective compound secrecy capacity is established. Subsequently, the case of additive uncertainty in the legitimate channel, in addition to the unknown eavesdropper channel, is studied. Its compound secrecy capacity and the optimal signaling are established in a closed form as well, revealing the same saddle-point property. When a saddle-point exists under strong secrecy, strong and weak secrecy compound capacities are equal.
机译:研究了复合窃听通道的强保密能力。离散字母下复合有限状态无记忆通道的保密容量的已知下限在强保密性准则下扩展到任意不确定性集和连续字母。给出了这些界限严格的条件。在鞍点条件下,复合保密能力显示为等于最坏情况下的信道的保密能力。在此基础上,研究了复合高斯多输入多输出窃听通道在频谱范数约束下且没有劣化假设的情况。首先,假设只有窃听者通道是未知的,但是已知具有有限的频谱范数(最大通道增益)。复合保密能力以封闭形式建立,并确定了最佳信令。复合容量等于最坏情况下的信道容量,从而建立了鞍点特性。最佳信号是高斯信号,在合法通道的特征向量上,最坏情况的窃听器是各向同性的。本征模功率分配在某种程度上类似于标准注水,但与标准注水不同。考虑了更一般的不确定性集,并且最大元素的存在被证明足以存在一个鞍点,因此最坏情况信道上的信令可以实现整个信道类别的复合容量。考虑等级受限的窃听者的情况,并建立了相应的复合保密能力。随后,除了未知的窃听者通道之外,还研究了合法通道中附加不确定性的情况。它的复合保密能力和最佳信令也以封闭形式建立,显示出相同的鞍点特性。当强保密性存在一个鞍点时,强保密复合容量和弱保密复合容量相等。

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