Non-iterative Optimization of Trajectory and Radio Resource for Aerial Network
Hyeonsu Lyu, Jonggyu Jang, Harim Lee, and Hyun Jong Yang

TL;DR
This paper introduces a non-iterative, MDP-based framework for joint trajectory and radio resource optimization in aerial IoT networks, overcoming local optima issues of traditional coordinate optimization methods.
Contribution
It proposes a novel non-iterative approach converting the problem into an MDP, enabling cooperative optimization without initial trajectory assumptions.
Findings
Significantly outperforms existing methods in simulations.
Nearly achieves the global optimum in optimization tasks.
Flexible framework compatible with various trajectory algorithms.
Abstract
We address a joint trajectory planning, user association, resource allocation, and power control problem to maximize proportional fairness in the aerial IoT network, considering practical end-to-end quality-of-service (QoS) and communication schedules. Though the problem is rather ancient, apart from the fact that the previous approaches have never considered user- and time-specific QoS, we point out a prevalent mistake in coordinate optimization approaches adopted by the majority of the literature. Coordinate optimization approaches, which repetitively optimize radio resources for a fixed trajectory and vice versa, generally converge to local optima when all variables are differentiable. However, these methods often stagnate at a non-stationary point, significantly degrading the network utility in mixed-integer problems such as joint trajectory and radio resource optimization. We…
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Taxonomy
TopicsUAV Applications and Optimization · Satellite Communication Systems · Air Traffic Management and Optimization
