First Demonstration of the Korean eLoran Accuracy in a Narrow Waterway Using Improved ASF Maps
arXiv:2109.08990 · doi:10.1109/TAES.2021.3114272
Abstract
The vulnerabilities of global navigation satellite systems (GNSSs) to radio frequency jamming and spoofing have attracted significant research attention. In particular, the large-scale jamming incidents that occurred in South Korea substantiate the practical importance of implementing a complementary navigation system. This letter briefly summarizes the efforts of South Korea to deploy an enhanced long-range navigation (eLoran) system, which is a terrestrial low-frequency radio navigation system that can complement GNSSs. After four years of research and development, the Korean eLoran testbed system has been recently deployed and is operational since June 1, 2021. Although its initial performance at sea is satisfactory, navigation through a narrow waterway is still challenging because a complete survey of the additional secondary factor (ASF), which is the largest source of error for eLoran, is practically difficult in a narrow waterway. This letter proposes an alternative way to survey the ASF in a narrow waterway and improve the ASF map generation methods. Moreover, the performance of the proposed approach was validated experimentally.
Submitted to IEEE Transactions on Aerospace and Electronic Systems
Cited by in corpus (9)
- Optimal Parameter Inflation to Enhance the Availability of Single-Frequency GBAS for Intelligent Air Transportation
- Urban Road Safety Prediction: A Satellite Navigation Perspective
- Evaluation of RF Fingerprinting-Aided RSS-Based Target Localization for Emergency Response
- Machine Learning-Based GPS Multipath Detection Method Using Dual Antennas
- Preliminary Analysis of Skywave Effects on MF DGNSS R-Mode Signals During Daytime and Nighttime
- Indoor Path Planning for Multiple Unmanned Aerial Vehicles via Curriculum Learning
- Simulation of Medium-Frequency R-Mode Signal Strength
- Movement Detection of Tongue and Related Body Parts Using IR-UWB Radar
- Construction of the Radio Map with Defective GPS Position Information