Paper: | SPCOM-L6.2 | ||
Session: | MIMO Precoder Design | ||
Time: | Friday, May 21, 09:50 - 10:10 | ||
Presentation: | Lecture | ||
Topic: | Signal Processing for Communications: Detection, Estimation, and Demodulation | ||
Title: | A ROBUST JOINT LINEAR PRECODER AND DECODER MMSE DESIGN FOR SLOWLY TIME-VARYING MIMO CHANNELS | ||
Authors: | Nadia Khaled; Interuniversity Micro-Electronics Center (IMEC) | ||
Geert Leus; Delft University of Technology | |||
Claude Desset; Interuniversity Micro-Electronics Center (IMEC) | |||
Hugo De Man; Interuniversity Micro-Electronics Center (IMEC) | |||
Abstract: | The joint linear precoder and decoder Minimum Mean Squared Error (MMSE) design represents a low complexity yet powerful solution for spatial multiplexing MIMO systems. Its performance, however, critically depends on the availability of timely Channel State Information (CSI) at both transmitter and receiver. In practice, the latter assumption can be severely challenged, due to channel time variations that lead to outdated CSI at the transmitter. State-of-the-art designs mistakenly use the outdated CSI to design the linear precoder and rely on the receiver to reduce the induced degradation. In this paper, we propose a robust Bayesian joint linear precoder and decoder solution that takes into account the uncertainty on the true channel given the outdated CSI at the transmitter. We finally assess the robustness of our design to channel time variations through Monte-Carlo analysis of the system's MMSE and average Bit-Error Rate (BER) performance. | ||
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