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Article detail · 2024

Adaptive elliptic trajectory-based received signal strength indicator antenna tracking algorithm

SAGE Publications

YÖKSİS OpenAlex ISSN 0142-3312 DOI 10.1177/01423312231213677 Citations 1 SJR Q3 JCR Q3

10.1177/01423312231213677

YÖKSİS YÖKSİS article record

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Abstract

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English (OpenAlex)

The continuous telemetry transmission between unmanned aerial vehicles (UAVs) and ground control stations is important particularly in scenarios lacking global positioning system (GPS) data. This paper proposes an adaptive novel elliptic trajectory formula-based tracking algorithm for received signal strength indicator (ANETF-RSSI) which dynamically optimizes model parameters based on energy-associated RSSI measurement errors. ANETF-RSSI generates a variable two-dimensional (2D) RSSI map to identify optimal paths, even under challenging conditions like circular flight paths, varying operating ranges, and accelerated maneuvering, which causes uncertainty into RSSI measurements during flight. In contrast to previous methods, the proposed approach eliminates the reliance on telemetry data such as GPS or complex multiantenna configurations, ensuring robust UAV communication continuity across routes ranging from 100 m to 100 km, even as the UAV rotates around the antenna. This method offers substantial contributions, including enhanced monitoring precision, simplified hardware configurations, continuous tracking with superior accuracy, and adaptability to diverse range routes without the need for preflight parameter tuning. Performance evaluations demonstrate that the proposed ANETF-RSSI method consistently outperforms existing technique, improving nominal performance by 32.02% in the most challenging operational scenarios and achieving a remarkable 48.76% improvement in minimum RSSI values. Consequently, this research provides a versatile and adaptive tracking solution for unexpected UAV flight trajectories.

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Topics

  • UAV Applications and Optimization
  • Radio Wave Propagation Studies
  • Air Traffic Management and Optimization

Type: article UAV Applications and Optimization

Index information

WoS (JCR) and Scopus (SJR) quartiles by ISSN and publication year. · 2024

Scopus (SJR) / WoS (JCR)

Transactions of the Institute of Measurement and Control

Scopus (SJR) Q3 0,427 Year 2024
WoS (JCR) Q3 JIF 1,9 Year 2024

Universities

  • YILDIZ TEKNİK ÜNİVERSİTESİ

Authors

  1. ALİ İHSAN TAŞ
  2. MEHMET İŞCAN YILDIZ TEKNİK ÜNİVERSİTESİ
  3. BERKAY GÜRKAN YILDIZ TEKNİK ÜNİVERSİTESİ
  4. CÜNEYT YILMAZ YILDIZ TEKNİK ÜNİVERSİTESİ