paper-with-me

Papers

UAV Formation and Resource Allocation Optimization for Communication-Assisted 3D InSAR Sensing

2024-07-09 · Mohamed-Amine Lahmeri, Víctor Mustieles-Pérez, Martin Vossiek, Gerhard Krieger, Robert Schober

In this paper, we investigate joint unmanned aerial vehicle (UAV) formation and resource allocation optimization for communication-assisted three-dimensional (3D) synthetic aperture radar (SAR) sensing. We consider a system consisting of two UAVs that perform bistatic interferometric SAR (InSAR) sensing for generation of a digital elevation model (DEM) and transmit the radar raw data to a ground station (GS) in real time. To account for practical 3D sensing requirements, we use non-conventional sensing performance metrics, such as the SAR interferometric coherence, i.e., the local cross-correlation between the two co-registered UAV SAR images, the point-to-point InSAR relative height error, and the height of ambiguity, which together characterize the accuracy with which the InSAR system can determine the height of ground targets. Our objective is to jointly optimize the UAV formation, speed, and communication power allocation for maximization of the InSAR coverage while satisfying energy, communication, and InSAR-specific sensing constraints. To solve the formulated non-smooth and non-convex optimization problem, we divide it into three sub-problems and propose a novel alternating optimization (AO) framework that is based on classical, monotonic, and stochastic optimization techniques. The effectiveness of the proposed algorithm is validated through extensive simulations and compared to several benchmark schemes. Furthermore, our simulation results highlight the impact of the UAV-GS communication link on the flying formation and sensing performance and show that the DEM of a large area of interest can be mapped and offloaded to ground successfully, while the ground topography can be estimated with centimeter-scale precision. Lastly, we demonstrate that a low UAV velocity is preferable for InSAR applications as it leads to better sensing accuracy.

📄 PDF Abstract BibTeX arXiv:2407.06607

Code (0)

등록된 구현이 없습니다.

Tasks

Stochastic Optimization

Similar Papers 제목 키워드 기반

Constrained Resource Allocation Problems in Communications: An Information-assisted Approach

2021-12-07 · I. Zakir Ahmed, Hamid Sadjadpour, Shahram Yousefi

We consider a class of resource allocation problems given a set of unconditional constraints whose objective function satisfies Bellman's optimality principle. Such problems are ubiquitous in wireless communication, sign…

Combinatorial Optimization

RL-Driven Security-Aware Resource Allocation Framework for UAV-Assisted O-RAN

2025-10-20 · Zaineh Abughazzah, Emna Baccour, Loay Ismail, Amr Mohamed 외 arxiv

The integration of Unmanned Aerial Vehicles (UAVs) into Open Radio Access Networks (O-RAN) enhances communication in disaster management and Search and Rescue (SAR) operations by ensuring connectivity when infrastructure…

Reinforcement Learning

Joint Long-Term Processed Task and Communication Delay Optimization in UAV-Assisted MEC Systems Using DQN

2024-09-24 · Maryam Farajzadeh Dehkordi, Bijan Jabbari

Mobile Edge Computing (MEC) assisted by Unmanned Aerial Vehicle (UAV) has been widely investigated as a promising system for future Internet-of-Things (IoT) networks. In this context, delay-sensitive tasks of IoT devices…

Edge-computing

Channel-Adaptive Robust Resource Allocation for Highly Reliable IRS-Assisted V2X Communications

2025-04-16 · Peng Wang, Weihua Wu

This paper addresses the challenges of resource allocation in vehicular networks enhanced by Intelligent Reflecting Surfaces (IRS), considering the uncertain Channel State Information (CSI) typical of vehicular environme…

Self-Learning

Joint User Association, Interference Cancellation and Power Control for Multi-IRS Assisted UAV Communications

2023-12-08 · Zhaolong Ning, Hao Hu, Xiaojie Wang, Qingqing Wu 외

Intelligent reflecting surface (IRS)-assisted unmanned aerial vehicle (UAV) communications are expected to alleviate the load of ground base stations in a cost-effective way. Existing studies mainly focus on the deployme…

Q-LearningScheduling