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ISAC Network Planning: Sensing Coverage Analysis and 3-D BS Deployment Optimization

ISAC Network Planning: Sensing Coverage Analysis and 3-D BS Deployment Optimization

来源:Arxiv_logoArxiv
英文摘要

Integrated sensing and communication (ISAC) networks strive to deliver both high-precision target localization and high-throughput data services across the entire coverage area. In this work, we examine the fundamental trade-off between sensing and communication from the perspective of base station (BS) deployment. Furthermore, we conceive a design that simultaneously maximizes the target localization coverage, while guaranteeing the desired communication performance. In contrast to existing schemes optimized for a single target, an effective network-level approach has to ensure consistent localization accuracy throughout the entire service area. While employing time-of-flight (ToF) based localization, we first analyze the deployment problem from a localization-performance coverage perspective, aiming for minimizing the area Cramer-Rao Lower Bound (A-CRLB) to ensure uniformly high positioning accuracy across the service area. We prove that for a fixed number of BSs, uniformly scaling the service area by a factor κincreases the optimal A-CRLB in proportion to κ^{2β}, where βis the BS-to-target pathloss exponent. Based on this, we derive an approximate scaling law that links the achievable A-CRLB across the area of interest to the dimensionality of the sensing area. We also show that cooperative BSs extends the coverage but yields marginal A-CRLB improvement as the dimensionality of the sensing area grows.

Kaitao Meng、Kawon Han、Christos Masouros、Lajos Hanzo

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Kaitao Meng,Kawon Han,Christos Masouros,Lajos Hanzo.ISAC Network Planning: Sensing Coverage Analysis and 3-D BS Deployment Optimization[EB/OL].(2025-06-22)[2025-07-09].https://arxiv.org/abs/2506.18009.点此复制

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