Lahmeri, Mohamed-Amine and Mustieles Pérez, Victor and Vossiek, Martin and Krieger, Gerhard and Schober, Robert (2025) Sensing Accuracy Optimization for Communication-assisted Dual-baseline UAV-InSAR. In: IEEE International Conference on Communications (ICC), 2025. IEEE International Conference on Communications (ICC), 2025-06-08 - 2025-06-12, Montreal, Canada.
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Abstract
In this paper, we study the optimization of the sensing accuracy of unmanned aerial vehicle (UAV)-based dual-baseline interferometric synthetic aperture radar (InSAR) systems. A swarm of three UAV-synthetic aperture radar (SAR) systems is deployed to image an area of interest from different angles, enabling the creation of two independent digital elevation models (DEMs). To reduce the InSAR sensing error, i.e., the height estimation error, the two DEMs are fused based on weighted averaging techniques into one final DEM. The heavy computations required for this process are performed on the ground. To this end, the radar data is offloaded in real time via a frequency division multiple access (FDMA) air-to-ground backhaul link. In this work, we focus on improving the sensing accuracy by minimizing the worst-case height estimation error of the final DEM. To this end, the UAV formation and the power allocated for offloading are jointly optimized based on alternating optimization (AO), while meeting practical InSAR sensing and communication constraints. Our simulation results demonstrate that the proposed solution can significantly improve the sensing accuracy compared to classical single-baseline UAV-InSAR systems and other benchmark schemes
| Item URL in elib: | https://elib.dlr.de/212071/ | ||||||||||||||||||||||||
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| Document Type: | Conference or Workshop Item (Speech) | ||||||||||||||||||||||||
| Title: | Sensing Accuracy Optimization for Communication-assisted Dual-baseline UAV-InSAR | ||||||||||||||||||||||||
| Authors: |
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| Date: | 2025 | ||||||||||||||||||||||||
| Journal or Publication Title: | IEEE International Conference on Communications (ICC), 2025 | ||||||||||||||||||||||||
| Refereed publication: | Yes | ||||||||||||||||||||||||
| Open Access: | Yes | ||||||||||||||||||||||||
| Gold Open Access: | No | ||||||||||||||||||||||||
| In SCOPUS: | No | ||||||||||||||||||||||||
| In ISI Web of Science: | No | ||||||||||||||||||||||||
| Status: | Published | ||||||||||||||||||||||||
| Keywords: | Synthetic aperture radar (SAR), InSAR, UAVs, drones, joint sensing and communications, optimization | ||||||||||||||||||||||||
| Event Title: | IEEE International Conference on Communications (ICC) | ||||||||||||||||||||||||
| Event Location: | Montreal, Canada | ||||||||||||||||||||||||
| Event Type: | international Conference | ||||||||||||||||||||||||
| Event Start Date: | 8 June 2025 | ||||||||||||||||||||||||
| Event End Date: | 12 June 2025 | ||||||||||||||||||||||||
| HGF - Research field: | Aeronautics, Space and Transport | ||||||||||||||||||||||||
| HGF - Program: | Space | ||||||||||||||||||||||||
| HGF - Program Themes: | Earth Observation | ||||||||||||||||||||||||
| DLR - Research area: | Raumfahrt | ||||||||||||||||||||||||
| DLR - Program: | R EO - Earth Observation | ||||||||||||||||||||||||
| DLR - Research theme (Project): | R - SAR missions | ||||||||||||||||||||||||
| Location: | Oberpfaffenhofen | ||||||||||||||||||||||||
| Institutes and Institutions: | Microwaves and Radar Institute > Radar Concepts | ||||||||||||||||||||||||
| Deposited By: | Mustieles Pérez, Victor | ||||||||||||||||||||||||
| Deposited On: | 23 Jan 2025 09:59 | ||||||||||||||||||||||||
| Last Modified: | 24 Jun 2025 11:49 |
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