Latency Minimization for Multi-AAV-Enabled ISCC Systems with Movable Antenna

Fuente: arXiv
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Main Authors: Chen, Yiyang, Liu, Wenchao, Wang, Chunjie, Wu, Yinyu, Zhang, Xuhui, Shen, Yanyan
Format: Preprint
Published: 2025
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_version_ 1866911096202330112
author Chen, Yiyang
Liu, Wenchao
Wang, Chunjie
Wu, Yinyu
Zhang, Xuhui
Shen, Yanyan
author_facet Chen, Yiyang
Liu, Wenchao
Wang, Chunjie
Wu, Yinyu
Zhang, Xuhui
Shen, Yanyan
contents This paper investigates an autonomous aerial vehicle (AAV)-enabled integrated sensing, communication, and computation system, with a particular focus on integrating movable antennas (MAs) into the system for enhancing overall system performance. Specifically, multiple MA-enabled AVVs perform sensing tasks and simultaneously transmit the generated computational tasks to the base station for processing. To minimize the maximum latency under the sensing and resource constraints, we formulate an optimization problem that jointly coordinates the position of the MAs, the computation resource allocation, and the transmit beamforming. Due to the non-convexity of the objective function and strong coupling among variables, we propose a two-layer iterative algorithm leveraging particle swarm optimization and convex optimization to address it. The simulation results demonstrate that the proposed scheme achieves significant latency improvements compared to the baseline schemes.
format Preprint
id arxiv_https___arxiv_org_abs_2508_05574
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Latency Minimization for Multi-AAV-Enabled ISCC Systems with Movable Antenna
Chen, Yiyang
Liu, Wenchao
Wang, Chunjie
Wu, Yinyu
Zhang, Xuhui
Shen, Yanyan
Information Theory
Signal Processing
This paper investigates an autonomous aerial vehicle (AAV)-enabled integrated sensing, communication, and computation system, with a particular focus on integrating movable antennas (MAs) into the system for enhancing overall system performance. Specifically, multiple MA-enabled AVVs perform sensing tasks and simultaneously transmit the generated computational tasks to the base station for processing. To minimize the maximum latency under the sensing and resource constraints, we formulate an optimization problem that jointly coordinates the position of the MAs, the computation resource allocation, and the transmit beamforming. Due to the non-convexity of the objective function and strong coupling among variables, we propose a two-layer iterative algorithm leveraging particle swarm optimization and convex optimization to address it. The simulation results demonstrate that the proposed scheme achieves significant latency improvements compared to the baseline schemes.
title Latency Minimization for Multi-AAV-Enabled ISCC Systems with Movable Antenna
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2508.05574