Javascript must be enabled to continue!
Autopilot Unmanned Smart Boat Vehicle (AUSV) Communication with LoRa RFM95
View through CrossRef
Autopilot is a system control application on moving vehicles such as airplanes, helicopters, or boat, which serves to stabilize the direction of motion in the desired time and the programmed path's direction. the autopilot control system is controlled by a series of microcontrollers and GPS that has the function to be able to determine and the desired object. This control system is designed with electrical system controls that utilize microcontrollers, sensor  and GPS as control media. The development of autopilot prototypes is used for testing new control algorithms and the reliability of other electronic components such as sensors and microprocessors. A control system is needed to control the boat to its destination. The relatively accurate system dynamics model affects the steering performance of the autopilot system. The system in question can be considered a boat with an actuator rudder, which experiences external disturbances. this system is broadly divided into two parts: the control station part and the autonomous boat part. These two parts communicate with each other using LoRa device. The data sent from the control station to the autonomous boat is target latitude and longitude coordinates. The autonomous boat will send feedback in the form of boat latitude and longitude coordinates so that users can find out the current location of the boat. Autonomous Boat also provides feedback to the control station via LoRa in the form of boat coordinates so that users can find out the current location of the boat and whether the boat has reached the specified coordinates. The control station will send feedback from the boat to a database that can be monitored via the website to find out the boat's current condition on the website. Based on the  results that have been obtained in the analysis and testing of the system. GPS sensor used in autonomous boat Ublox NEO-7m has an accuracy level with an average distance value of 3.220921 meters with the lowest cold start time of 7 seconds.  Compass sensor used in autonomous boat CMPS11 has an accuracy level with an average value of 3.041667 degrees. Communication distance between autonomous boat and control station using LoRa with 5dBi antenna can reach 1406.79 meters in condition without obstruction between nodes.  Data delivery system can be successfully sent from user to autonomout boat and sending feedback back to user. Delay update of boat coordinate data on interface has the lowest average of 30.8 seconds. Based on turning circle test results, autonomous boat is able to create imperfect circles with a radius of 8,364 m.
Title: Autopilot Unmanned Smart Boat Vehicle (AUSV) Communication with LoRa RFM95
Description:
Autopilot is a system control application on moving vehicles such as airplanes, helicopters, or boat, which serves to stabilize the direction of motion in the desired time and the programmed path's direction.
the autopilot control system is controlled by a series of microcontrollers and GPS that has the function to be able to determine and the desired object.
This control system is designed with electrical system controls that utilize microcontrollers, sensor  and GPS as control media.
The development of autopilot prototypes is used for testing new control algorithms and the reliability of other electronic components such as sensors and microprocessors.
A control system is needed to control the boat to its destination.
The relatively accurate system dynamics model affects the steering performance of the autopilot system.
The system in question can be considered a boat with an actuator rudder, which experiences external disturbances.
this system is broadly divided into two parts: the control station part and the autonomous boat part.
These two parts communicate with each other using LoRa device.
The data sent from the control station to the autonomous boat is target latitude and longitude coordinates.
The autonomous boat will send feedback in the form of boat latitude and longitude coordinates so that users can find out the current location of the boat.
Autonomous Boat also provides feedback to the control station via LoRa in the form of boat coordinates so that users can find out the current location of the boat and whether the boat has reached the specified coordinates.
The control station will send feedback from the boat to a database that can be monitored via the website to find out the boat's current condition on the website.
Based on the  results that have been obtained in the analysis and testing of the system.
GPS sensor used in autonomous boat Ublox NEO-7m has an accuracy level with an average distance value of 3.
220921 meters with the lowest cold start time of 7 seconds.
 Compass sensor used in autonomous boat CMPS11 has an accuracy level with an average value of 3.
041667 degrees.
Communication distance between autonomous boat and control station using LoRa with 5dBi antenna can reach 1406.
79 meters in condition without obstruction between nodes.
 Data delivery system can be successfully sent from user to autonomout boat and sending feedback back to user.
Delay update of boat coordinate data on interface has the lowest average of 30.
8 seconds.
Based on turning circle test results, autonomous boat is able to create imperfect circles with a radius of 8,364 m.
Related Results
PERANCANGAN AUTOPILOT LATERAL-DIREKSIONAL PESAWAT NIRAWAK LSU-05 (THE DESIGN OF THE LATERAL-DIRECTIONAL AUTOPILOT FOR THE LSU-05 UNMANNED AERIAL VEHICLE)
PERANCANGAN AUTOPILOT LATERAL-DIREKSIONAL PESAWAT NIRAWAK LSU-05 (THE DESIGN OF THE LATERAL-DIRECTIONAL AUTOPILOT FOR THE LSU-05 UNMANNED AERIAL VEHICLE)
The autopilot on the aircraft is developed based on the mode of motion of the aircraft i.e. longitudinal and lateral-directional motion. In this paper, an autopilot is designed in ...
An Overview of Late-onset Rheumatoid Arthritis
An Overview of Late-onset Rheumatoid Arthritis
It is well known that rheumatoid arthritis (RA) has an increased incidence in young and middle-aged adults. When this disease begins in adults between the ages of 60 and 65, it is ...
Improved Methodology for Boat Impact Analysis of Fixed Platform
Improved Methodology for Boat Impact Analysis of Fixed Platform
Abstract
Improved methodology for Boat Impact Analysis (BIA) for fixed platform is applied for Malaysian water. Brownfield structure boat landing, riser guard and ja...
RECOMMENDATIONS ON PREPARING UNITS OF UNMANNED GROUND COMPLEXES FOR USE
RECOMMENDATIONS ON PREPARING UNITS OF UNMANNED GROUND COMPLEXES FOR USE
This work is devoted to practical recommendations on preparation for the use of unmanned ground systems as part of a unit. The materials of the article provide a theoretical justif...
An Energy Efficient Design of Computation Offloading Enabled by UAV
An Energy Efficient Design of Computation Offloading Enabled by UAV
The data volume is exploding due to various newly-developing applications that call for stringent communication requirements towards 5th generation wireless systems. Fortunately, m...
Hasselø-egen
Hasselø-egen
The Hasselø DugoutA Contribution to the History of the Danish DugoutsThe great difficulty in the study of the history of the dugout is that the types remain fundamentally unchanged...
Assessment of the Applicability of Lora Technology in Smart Metering
Assessment of the Applicability of Lora Technology in Smart Metering
Рассмотрен вопрос применения технологии Lora для взаимодействия с современными электросчетчиками. Даны предпосылки применения, компоненты и возможности технологии Lora. Описана тес...
Design a Ship Autopilot using Neural Network
Design a Ship Autopilot using Neural Network
Ship autopilots play an important role in insurance of safe navigation and efficient transportation as else. For their successful design and development, many control techniques we...

