activity
20242026
collaborators

6 papers

eess.SP2026

Analysis of Sensing in OFDM-based ISAC under the Influence of Sampling Jitter

Lucas Giroto, Ândrei Camponogara, Yueheng Li +4

To enable integrated sensing and communication (ISAC) in cellular networks, a wide range of additional requirements and challenges are either imposed or become more critical. One s…

eess.SP2025

Multi-RIS Deployment Optimization for mmWave ISAC Systems in Real-World Environments

Yueheng Li, Xueyun Long, Mario Pauli +6

Reconfigurable intelligent surface-assisted integrated sensing and communication (RIS-ISAC) presents a promising system architecture to leverage the wide bandwidth available at mil…

eess.SP2025

System Concept and Demonstration of Bistatic MIMO-OFDM-based ISAC

Lucas Giroto de Oliveira, Xueyun Long, Christian Karle +6

In future sixth-generation (6G) mobile networks, radar sensing is expected to be offered as an additional service to its original purpose of communication. Merging these two functi…

eess.SP2025

Joint BS Deployment and Power Optimization for Minimum EMF Exposure with RL in Real-World Based Urban Scenario

Xueyun Long, Yueheng Li, Mario Pauli +2

Base station (BS) deployment remains a critical task with successive wireless communication generations and increasing data rates demands, while the electromagnetic field (EMF) exp…

eess.SP2024

On the Sensing Performance of OFDM-based ISAC under the Influence of Oscillator Phase Noise

Lucas Giroto de Oliveira, Yueheng Li, Benedikt Geiger +3

Integrated sensing and communication (ISAC) is a novel capability expected for sixth generation (6G) cellular networks. To that end, several challenges must be addressed to enable…

eess.SP2024

Bistatic OFDM-based ISAC with Over-the-Air Synchronization: System Concept and Performance Analysis

David Brunner, Lucas Giroto de Oliveira, Charlotte Muth +8

Integrated sensing and communication (ISAC) has been defined as one goal for 6G mobile communication systems. In this context, this article introduces a bistatic ISAC system based…