collaborators

6 papers

eess.IV2026

GroundGazer: An optical reference system for planar localization with millimeter accuracy at low cost

Sven Hinderer, Jakob Hüsken, Bohan Sun +1

Highly accurate indoor localization systems with absolute mm positioning accuracy are currently expensive. They include laser trackers, total stations, and motion capture systems r…

cs.RO2026

Indoor Positioning Based on Active Radar Sensing and Passive Reflectors: Reflector Placement Optimization

Sven Hinderer, Pascal Schlachter, Zhibin Yu +2

We extend our work on a novel indoor positioning system (IPS) for autonomous mobile robots (AMRs) based on radar sensing of local, passive radar reflectors. Through the combination…

eess.SP2026

Blind Source Separation of Radar Signals in Time Domain Using Deep Learning

Sven Hinderer

Identification and further analysis of radar emitters in a contested environment requires detection and separation of incoming signals. If they arrive from the same direction and a…

eess.IV2026

Investigation of ArUco Marker Placement for Planar Indoor Localization

Sven Hinderer, Martina Scheffler, Bin Yang

Indoor localization of autonomous mobile robots (AMRs) can be realized with fiducial markers. Such systems require only a simple, monocular camera as sensor and fiducial markers as…

eess.SP2025

On Mutual Information Neural Estimation for Localization

Sven Hinderer, Manuel Buchfink, Bin Yang

Mutual information (MI) is a promising candidate measure for the assessment and optimization of localization systems, as it captures nonlinear dependencies between random variables…

eess.SP2025

Hybrid Baseband Simulation for Single-Channel Radar-Based Indoor Localization System

Sven Hinderer, Zheming Yin, Athanasios Papanikolaou +2

Indoor localization with chirp sequence radar at millimeter wavelength offers high localization accuracy at low system cost. We propose a hybrid radar baseband signal simulator for…