论文标题

在干扰约束下,在高斯MIMO窃听通道上,全球最佳的安全信号传导的算法

Algorithms for Globally-Optimal Secure Signaling over Gaussian MIMO Wiretap Channels Under Interference Constraints

论文作者

Dong, Limeng, Loyka, Sergey, Li, Yong

论文摘要

除了总发射功率约束(TPC)之外,在干扰功率约束(IPC)下还考虑了多用户高斯MIMO Wiletap通道。提出了\ textit {全局}其保密率的最大化算法。它们与保密能力的融合经过严格证明,并通过分析建立了许多属性。与已知的算法不同,提议的算法不限于误差案例,并且被证明会收敛到\ textit {global {global},而不是在一般的MIMO案例中,即使通道未降级。在实践中,收敛性很快,因为仅需要一个少量至中等的牛顿步骤才能达到高精度。当最佳最佳问题的最佳点在某些(单数)情况下没有提供最佳的传输协方差矩阵时,TPC和IPC的相互作用显示会导致异常属性。为了解决此问题,开发了一种算法来计算这些单数案例中最佳的传输协方差矩阵。结果表明,该算法还解决了\ textIt {lobally}的双重(非covex)问题,最大程度地限制了由保密和干扰约束的总发射功率。它提供了实现保密能力所需的最小发射功率和各自的信号传导策略,因此可以节省动力。

Multi-user Gaussian MIMO wiretap channel is considered under interference power constraints (IPC), in addition to the total transmit power constraint (TPC). Algorithms for \textit{global} maximization of its secrecy rate are proposed. Their convergence to the secrecy capacity is rigorously proved and a number of properties are established analytically. Unlike known algorithms, the proposed ones are not limited to the MISO case and are proved to converge to a \textit{global} rather than local optimum in the general MIMO case, even when the channel is not degraded. In practice, the convergence is fast as only a small to moderate number of Newton steps is required to achieve a high precision level. The interplay of TPC and IPC is shown to result in an unusual property when an optimal point of the max-min problem does not provide an optimal transmit covariance matrix in some (singular) cases. To address this issue, an algorithm is developed to compute an optimal transmit covariance matrix in those singular cases. It is shown that this algorithm also solves the dual (nonconvex) problems of \textit{globally} minimizing the total transmit power subject to the secrecy and interference constraints; it provides the minimum transmit power and respective signaling strategy needed to achieve the secrecy capacity, hence allowing power savings.

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