Title :
Filter Design With Secrecy Constraints: The MIMO Gaussian Wiretap Channel
Author :
Reboredo, Hugo ; Xavier, Joao ; Rodrigues, Miguel R. D.
Author_Institution :
Dept. de Cienc. de Comput., Univ. do Porto, Porto, Portugal
Abstract :
This paper considers the problem of filter design with secrecy constraints, where two legitimate parties (Alice and Bob) communicate in the presence of an eavesdropper (Eve) over a Gaussian multiple-input-multiple-output (MIMO) wiretap channel. This problem involves designing, subject to a power constraint, the transmit and the receive filters which minimize the mean-squared error (MSE) between the legitimate parties whilst assuring that the eavesdropper MSE remains above a certain threshold. We consider a general MIMO Gaussian wiretap scenario, where the legitimate receiver uses a linear zero-forcing (ZF) filter and the eavesdropper receiver uses either a ZF or an optimal linear Wiener filter. We provide a characterization of the optimal filter designs by demonstrating the convexity of the optimization problems. We also provide generalizations of the filter designs from the scenario where the channel state is known to all the parties to the scenario where there is uncertainty in the channel state. A set of numerical results illustrates the performance of the novel filter designs, including the robustness to channel modeling errors. In particular, we assess the efficacy of the designs in guaranteeing not only a certain MSE level at the eavesdropper, but also in limiting the error probability at the eavesdropper. We also assess the impact of the filter designs on the achievable secrecy rates. The penalty induced by the fact that the eavesdropper may use the optimal nonlinear receive filter rather than the optimal linear one is also explored in the paper.
Keywords :
Gaussian processes; MIMO communication; Wiener filters; mean square error methods; optimisation; probability; wireless channels; Gaussian multiple-input-multiple-output wiretap channel; MIMO Gaussian wiretap channel; MSE; ZF filter; channel modeling errors; channel state; eavesdropper; error probability; filter design; filter designs; linear zero forcing filter; mean squared error; nonlinear receive filter; optimal filter designs; optimal linear; optimal linear Wiener filter; optimization problems; power constraint; secrecy constraints; Error Probability; MIMO; MSE; Wiener; ZF; filter design; mutual information; physical-layer security; secrecy; wiretap;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2013.2262275