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Multistatic Integrated Sensing and Communication System Based on Macro-Micro Cooperation.

Xiaoyun Wang1, Zixiang Han1, Jing Jin1

  • 1Future Research Laboratory, China Mobile Research Institute, Beijing 100053, China.

Sensors (Basel, Switzerland)
|April 27, 2024
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Summary

This study introduces a new integrated sensing and communication (ISAC) system for 6G networks using macro-micro cooperation. This novel approach enhances object detection accuracy by utilizing flexible microsite receivers.

Keywords:
6GISACcooperative sensingmacrositemicrositemultistatic

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Area of Science:

  • Wireless Communication Systems
  • Signal Processing
  • Mobile Networks

Background:

  • Sixth-generation (6G) mobile networks require advanced integrated sensing and communication (ISAC) capabilities.
  • Traditional ISAC systems often rely solely on macrocell sites, limiting flexibility and sensing precision.
  • Microsites offer adaptable deployment for enhanced proximity to sensing targets.

Purpose of the Study:

  • To propose a novel multistatic ISAC system leveraging macro-micro cooperation for 6G networks.
  • To analyze microsite deployment strategies for optimal coverage within macrocell areas.
  • To develop an efficient method for joint data processing to estimate object position and velocity.

Main Methods:

  • Analysis of microsite deployment along radial and angular dimensions within macrocells.
  • Derivation of microsite coverage areas based on their positions.
  • Development of an efficient estimation approach for object position and velocity using joint data processing from multiple microsites.
  • Implementation of an optimization method for cooperative sensing.

Main Results:

  • The proposed macro-micro cooperation strategy in multistatic ISAC systems improves sensing coverage.
  • The system demonstrates enhanced accuracy in estimating the position and velocity of sensing objects.
  • Simulation results validate the effectiveness of the macro-micro cooperation approach over macrosite-only cooperation.

Conclusions:

  • The novel multistatic ISAC system with macro-micro cooperation shows significant potential for 6G mobile networks.
  • Flexible microsite deployment enhances sensing service coverage and accuracy.
  • The proposed system offers a promising solution for improved object detection and tracking in future wireless networks.