Awesome
5G-based System-level Integrated Sensing and Communication Simulator
STILL UNDER DEVELOPING and DEBUGGING
NOTE: R2023a or above is NOT available for this simulator
Incooperates the following parts:<br>
Scenario generation,<br>
Based on the OpenStreetMap™ open-source data
Multi-node ISAC network simulation,<br>
Focus on implementing key techniques of ISAC
Communication simulation functions (MIMO), including:<br>
APP layers modeling
RLC layers modeling
MAC layers modeling
PHY layers modeling
CDL channel modeling
Pathloss modeling
Simulation visualization tools
Sensing simulation functions (mono-static sensing), including:<br>
Echo modeling
Mono-static sensing modeling
Detection algorithms (2D-CFAR)
Estimation algorithms (2D-FFT and MUSIC)
Initial members participated in this project:<br>
D. Xue, J. Wei, Y. Li, T. Zeng,
Beijing University of Posts and Telecommunications,
Beijing, P. R. China.
MATLAB version and toolboxes required:
R2019(not tested)-R2022, (IMPORTANT NOTE: R2023a and above is not available!)
5G Toolbox, Phased Array System Toolbox, Wireless Communication Toolbox.
Getting Started
To simulate the system-level ISAC scenario,
first, deploy the scenario in the 'scenarios' folder,
and then locate the corresponding file name in the 'launcherFiles' folder to run the simulation.
Documentation
None at present.
License
Copyright (C) 2023 Beijing University of Posts and Telecommunications
All rights reserved.
System-level ISAC Simulator
Author: D. Xue, et.al.
Contact
li-yonggang@bupt.edu.cn (currently in charge)
3GPP Standards:
3GPP TS 38.211(Physical channels and modulation),
3GPP TS 38.212(Multiplexing and channel coding),
3GPP TS 38.213(Physical layer procedures for control),
3GPP TS 38.214(Physical layer procedures for data),
3GPP TR 38.901(Study on channel model for frequencies from 0.5 to 100 GHz).