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A Framework of RIS-assisted ICSC User-centric Based Systems: Latency Optimization and Design

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arxiv 2402.13692 v3 pith:FEJHVFAL submitted 2024-02-21 eess.SP

classification eess.SP
keywords scenarioaddressframeworkproblemalgorithmbeamformingclosed-formcomputation
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This paper studies a comprehensive framework for reconfigurable intelligent surface (RIS)-assisted integrated communication, sensing, and computation (ICSC) systems with a User-centric focus. The study encompasses two scenarios: the general multi-user equipment (UE) scenario and the simplified single-UE scenario. To satisfy the critical need for time-efficient sensing, we investigate the latency minimization problem, subject to constraints on UEs' transmit power, radar signal-to-interference-plus-noise-ratio (SINR), RIS phase shift, and computation capability. To address the formulated non-convex problem in the multi-UE scenario, we decouple the original problem into two subproblems, where the computational and beamforming settings are optimized alternately. Specifically, for the computational settings, we derive a closed-form solution for the offloading volume and propose a low-complexity algorithm based on the bisection search method to optimize the edge computing resource allocation. Additionally, we employ two equivalent transformations to address the challenge posed by the non-convex sum-of-ratios form in the objective function (OF) of the subproblem related to active and passive beamforming. Several techniques are then combined to address these subproblems. Furthermore, a low-complexity algorithm that offers closed-form solutions is developed for the simplified single UE scenario. Finally, simulation results substantiate the effectiveness of the proposed framework.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Sensing Framework Design and Performance Optimization with Action Detection for ISCC

    eess.SP 2025-05 conditional novelty 5.0 of 10

    A power-difference action-onset detector plus ADMM-based resource allocation improves sensing accuracy in multi-device ISCC systems over continuous-upload and fixed-time-step baselines.

  2. RIS-Aided Integrated Sensing and Communication Systems under Dual-polarized Channels

    cs.IT 2025-01 conditional novelty 5.0 of 10

    A dual-polarized RIS-aided ISAC system is optimized with WMMSE, alternating optimization, majorization-minimization, and penalty methods, and is shown by simulation to outperform single-polarized baselines.

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