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Semantic Scholar · Article (ISPRS Int. J. Geo Inf.)

Autonomous Flight Trajectory Control System for Drones in Smart City Traffic Management

Published 2021-05-17 From ISPRS Int. J. Geo Inf. 3 authors

Attribution

This is the abstract and citation. Full text lives at Semantic Scholar — we link out rather than host. All credit to the authors and ISPRS Int. J. Geo Inf..

Abstract

Verbatim from Semantic Scholar. Not paraphrased, not summarized.

With the exponential growth of numerous drone operations ranging from infrastructure monitoring to even package delivery services, the integration of UAS in the smart city transportation systems is an actual task that requires radically new, sustainable (safe, secure, with minimum environmental impact and life cycle cost) solutions. The primary objective of this proposed option is the definition of routes as desired and commanded trajectories and their autonomous execution. The airspace structure and fixed routes are given in the global GPS reference system with supporting GIS mapping. The concept application requires a series of further studies and solutions as drone trajectory (or corridor) following by an autonomous trajectory tracking control system, coupled with autonomous conflict detection, resolution, safe drone following, and formation flight options. The second part of the paper introduces such possible models and shows some results of their verification tests. Drones will be connected with the agency, designed trajectories to support them with factual information on trajectories and corridors. While the agency will use trajectory elements to design fixed or desired trajectories, drones may use the conventional GPS, infrared, acoustic, and visual sensors for positioning and advanced navigation. The accuracy can be improved by unique markers integrated into the infrastructure.

Authors

  • D. Nguyen
  • J. Rohács
  • D. Rohács

Keywords

  • Computer Science
  • Engineering
  • Environmental Science

Citation: D. Nguyen, J. Rohács, D. Rohács (2021). Autonomous Flight Trajectory Control System for Drones in Smart City Traffic Management. ISPRS Int. J. Geo Inf.. Semantic Scholar ID 0a1c9004a2a6a4beb88454c839eb9b7207a29748. https://doi.org/10.3390/ijgi10050338 ↗