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Joint Transceiver Optimization for MmWave/THz MU-MIMO ISAC Systems

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arxiv 2401.17681 v1 pith:OMRRWOV6 submitted 2024-01-31 cs.IT eess.SPmath.IT

classification cs.ITeess.SPmath.IT
keywords communicationperformanceproblemisacjointprecodersensingtransceiver
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In this paper, we consider the problem of joint transceiver design for millimeter wave (mmWave)/Terahertz (THz) multi-user MIMO integrated sensing and communication (ISAC) systems. Such a problem is formulated into a nonconvex optimization problem, with the objective of maximizing a weighted sum of communication users' rates and the passive radar's signal-to-clutter-and-noise-ratio (SCNR). By exploring a low-dimensional subspace property of the optimal precoder, a low-complexity block-coordinate-descent (BCD)-based algorithm is proposed. Our analysis reveals that the hybrid analog/digital beamforming structure can attain the same performance as that of a fully digital precoder, provided that the number of radio frequency (RF) chains is no less than the number of resolvable signal paths. Also, through expressing the precoder as a sum of a communication-precoder and a sensing-precoder, we develop an analytical solution to the joint transceiver design problem by generalizing the idea of block-diagonalization (BD) to the ISAC system. Simulation results show that with a proper tradeoff parameter, the proposed methods can achieve a decent compromise between communication and sensing, where the performance of each communication/sensing task experiences only a mild performance loss as compared with the performance attained by optimizing exclusively for a single task.

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  1. Spreading over OFDM for Integrated Sensing and Communications (ISAC) Ranging: Multi-user Interference Mitigation

    eess.SP 2025-05 conditional novelty 5.0 of 10

    The paper derives the inter-band cross-correlation interference in multi-user OFDMA ISAC ranging and shows that spreading with periodic discrete prolate spheroidal sequences reduces sidelobe energy when the interferin...

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