Symbol-level precoding (SLP) can achieve remarkable gains in multi-user multiple-input-single-output (MU-MISO) systems, while its extension to multi-user multiple-input-multiple-output (MU-MIMO) systems offers even greater potential by exploiting the spatial dimensions at both the transmitter and receiver. However, existing MU-MIMO SLP designs require symbol-dependent receive combining matrices or rely on alternating iterative optimization, resulting in high signaling overhead and complexity. To overcome these limitations, this letter revisits the receiver design for SLP-based MU-MIMO systems from a minimum mean square error (MMSE) perspective. By explicitly exploiting the rank-one structure of the effective channel induced by SLP, it is proven that the MMSE-optimal linear receiver admits a simple matched-filter form with low computational complexity. Furthermore, it is analytically demonstrated that the conventional regularized MMSE (RMMSE) receiver yields identical decoding performance for any choice of the regularization factor under SLP transmission. Simulation results validate the theoretical analysis and demonstrate that the proposed receiver structures achieve superior performance with substantially reduced complexity compared to existing approaches.
It is known that joint channel estimation and soft symbol decoding enhance the performance of multiple-input multiple-output (MIMO) communication systems with low-resolution analog-to-digital converters (ADCs). However, existing techniques require accurate knowledge of channel statistics to be effective. In this paper,...
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Cell-free massive multiple-input multiple-output (CF-mMIMO) is a promising architecture for future wireless networks, yet its practical deployment is severely hindered by hardware impairments and time-varying channel conditions. To address these challenges, we investigate downlink transmission in a rate-splitting multi...
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Generalized spatial modulation (GSM) is an appealing multiple-antenna transmission paradigm, which offers a favorable trade-off between spectral efficiency and hardware complexity by activating part of the transmit antennas. However, in high-throughput scenarios characterized by rank-deficient multiple-input multiple-o...
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Downlink multi-user multiple-input multiple-output (MIMO) precoding with limited channel state information (CSI) feedback in multi-cell systems is studied. Conventional codebook-based CSI feedback compresses the UE-specific physical channels, which leaves an inherent mismatch between the base-station (BS) precoders and...
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This paper introduces a successive interference cancellation (SIC)-free uplink rate-splitting multiple access (RSMA) framework with dual-polarized multiple-input and multiple-output (DP-MIMO) to overcome decoding complexity and error propagation. Different from traditional uplink RSMA, the BS manages inter-user and int...