scholarly journals Design of Signs Information Monitoring System for Man Overboard Based On BeiDou Satellite Navigation System

Author(s):  
Shi-ai Ren ◽  
Hong-wu Chen ◽  
Hai-peng Zhang ◽  
Zhu Liu ◽  
Shan-shan Wu
2014 ◽  
Vol 513-517 ◽  
pp. 671-674
Author(s):  
Yi Fang He ◽  
Jun Jie Li ◽  
Qi He ◽  
Zhi Jun Li

An elderly people monitoring system based on 3-axis digital accelerometer ADXL345 and digital signal controller TMS320F28335 was designed based on 3-axis digital accelerometer ADXL345 and digital signal controller TMS320F28335. The human posture was collected from ADXL345 by the DSC28335. The FFT filtering algorithm was used to improve the detection accuracy. Then the exercise situation of the elderly people was calculated by using Pedometer algorithm. The fall information was calculated by analyzing the rate of acceleration change. The Beidou Satellite Navigation System was designed for collecting position data to protect the elderly people in different situation.


2021 ◽  
Vol 2021 ◽  
pp. 1-9
Author(s):  
Li Yang ◽  
Yunhan Zhang ◽  
Haote Ruan

The BeiDou Satellite Navigation System of China can provide users with high precision, as well as all-weather and real-time positioning and navigation information. It can be widely used in many applications. However, new challenges appear with the expansion of the 5G communication system. To eradicate or weaken the influence of various errors in BeiDou positioning, a BeiDou satellite positioning algorithm based on GPRS technology is proposed. According to the principles of the BeiDou Satellite navigation system, the navigation and positioning data are obtained and useful information are extracted and sent to the communication network through the wireless module. The error is corrected by establishing a real-time kinematic (RTK) mathematical model, and the pseudorange is calculated by carrier phase to further eliminate the relativistic and multipath errors. Based on the results of error elimination, the BeiDou satellite positioning algorithm is improved and the positioning error is corrected. The experimental results show that the positioning accuracy and efficiency of the algorithm can meet the actual needs of real-time dynamic positioning systems.


Sign in / Sign up

Export Citation Format

Share Document