The effective tracking area of ultra short baseline (USBL) systems strongly relates to the safety of autonomous underwater vehicles (AUVs). This problem has not been studied previously. A method for determining the effective tracking area using acoustic theory is proposed. Ray acoustic equations are used to draw rays, which ascertain the effective space. The sonar equation is established in order to discover the available range of the USBL system and the background noise level using sonar characteristics. The available range defines a hemisphere like enclosure. The overlap of the effective space with the hemisphere is the effective area for USBL systems tracking AUVs. Lake and sea trials show the proposed method's validity
Underwater navigation performance of Autonomous Underwater Vehicles (AUVs) strongly affects the qual...
This paper describes a method for the precise postprocessed positioning of a deep-diving autonomous ...
The ability to navigate a ROV to exact bottom locations or along a precise path is essential to many...
The long baseline (LBL) system is widely used to locate and track autonomous underwater vehicles (AU...
The long baseline (LBL) system is widely used to locate and track autonomous underwater vehicles (AU...
The ultra-short baseline positioning system (USBL) has the advantages of flexible application and ea...
Ultra-Short BaseLine (USBL) positioning systems born as a technology for underwater target tracking ...
Ultra-Short BaseLine (USBL) positioning systems born as a technology for underwater target tracking ...
This paper presents an acoustic localization system for small and low-cost autonomous underwater veh...
© 2019 IEEE. The underwater environment poses significant challenges for accurate autonomous underwa...
This study tests the feasibility of using a system of integrated unmanned underwater vehicles (UUVs)...
Nowadays, the use of autonomous vehicles for ocean research has increased, since these vehicles have...
Nowadays, the use of autonomous vehicles for ocean research has increased, since these vehicles have...
Nowadays, the use of autonomous vehicles for ocean research has increased, since these vehicles have...
Nowadays, the use of autonomous vehicles for ocean research has increased, since these vehicles hav...
Underwater navigation performance of Autonomous Underwater Vehicles (AUVs) strongly affects the qual...
This paper describes a method for the precise postprocessed positioning of a deep-diving autonomous ...
The ability to navigate a ROV to exact bottom locations or along a precise path is essential to many...
The long baseline (LBL) system is widely used to locate and track autonomous underwater vehicles (AU...
The long baseline (LBL) system is widely used to locate and track autonomous underwater vehicles (AU...
The ultra-short baseline positioning system (USBL) has the advantages of flexible application and ea...
Ultra-Short BaseLine (USBL) positioning systems born as a technology for underwater target tracking ...
Ultra-Short BaseLine (USBL) positioning systems born as a technology for underwater target tracking ...
This paper presents an acoustic localization system for small and low-cost autonomous underwater veh...
© 2019 IEEE. The underwater environment poses significant challenges for accurate autonomous underwa...
This study tests the feasibility of using a system of integrated unmanned underwater vehicles (UUVs)...
Nowadays, the use of autonomous vehicles for ocean research has increased, since these vehicles have...
Nowadays, the use of autonomous vehicles for ocean research has increased, since these vehicles have...
Nowadays, the use of autonomous vehicles for ocean research has increased, since these vehicles have...
Nowadays, the use of autonomous vehicles for ocean research has increased, since these vehicles hav...
Underwater navigation performance of Autonomous Underwater Vehicles (AUVs) strongly affects the qual...
This paper describes a method for the precise postprocessed positioning of a deep-diving autonomous ...
The ability to navigate a ROV to exact bottom locations or along a precise path is essential to many...