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From the 1 of 10 linked papers with an AI index.

activity
20242026
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10 papers

eess.SP2026

MVLA-GR: A Phase-Free Multipath-Based Geometry Reconstruction Method via Multi-View Likelihood Accumulation for ISAC

Bowei Xing, Yuxiang Zhang, Jianhua Zhang +4

The paper introduces MVLA-GR, a phase‑free method that reconstructs object geometry for integrated sensing and communication by accumulating delay and power information from multip…

eess.SP2025

Far-Field vs. Near-Field Propagation Channels: Key Differences and Impact on 6G XL-MIMO Performance Evaluation

Zihang Ding, Jianhua Zhang, Changsheng You +5

Extremely large-scale multiple-input multiple-output (XL-MIMO) is regarded as a promising technology for next-generation communication systems. However, this will expand the near-f…

eess.SP2025

Near-Field Propagation and Spatial Non-Stationarity Channel Model for 6-24 GHz (FR3) Extremely Large-Scale MIMO: Adopted by 3GPP for 6G

Huixin Xu, Jianhua Zhang, Pan Tang +12

Next generation cellular deployments are expected to exploit the 6-24 GHz frequency range 3 (FR3) and extremely large-scale multiple-input multiple-output (XL-MIMO) to enable ultra…

eess.SP2025

The Coupling Effect of Sensing Targets on the Environment for 3GPP ISAC Channels: Observation, Modeling, and Validation

Yameng Liu, Jianhua Zhang, Yuxiang Zhang +4

Integrated Sensing And Communication (ISAC) has been identified as a key 6G application by ITU and 3GPP, with standardization efforts already underway. Sensing tasks, such as targe…

eess.SP2025

A Unified RCS Modeling of Typical Targets for 3GPP ISAC Channel Standardization and Experimental Analysis

Yuxiang Zhang, Jianhua Zhang, Xidong Hu +9

Accurate radar cross section (RCS) modeling is crucial for characterizing target scattering and improving the precision of Integrated Sensing and Communication (ISAC) channel model…

eess.SP2025

Empirical Study on Near-Field and Spatial Non-Stationarity Modeling for THz XL-MIMO Channel in Indoor Scenario

Huixin Xu, Jianhua Zhang, Pan Tang +5

Terahertz (THz) extremely large-scale MIMO (XL-MIMO) is considered a key enabling technology for 6G and beyond due to its advantages such as wide bandwidth and high beam gain. As t…