A Novel Zero Velocity Interval Detection Algorithm for Self-Contained Pedestrian Navigation System with Inertial Sensors
Zero velocity update (ZUPT) plays an important role in pedestrian navigation algorithms with the premise that the zero velocity interval (ZVI) should be detected accurately and effectively. A novel adaptive ZVI detection algorithm based on a smoothed pseudo Wigner–Ville distribution to remove multip...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
MDPI AG
2016-09-01
|
Series: | Sensors |
Subjects: | |
Online Access: | http://www.mdpi.com/1424-8220/16/10/1578 |
id |
doaj-50e9fdbf55de421ab5032f7d8ce5455c |
---|---|
record_format |
Article |
spelling |
doaj-50e9fdbf55de421ab5032f7d8ce5455c2020-11-25T00:49:15ZengMDPI AGSensors1424-82202016-09-011610157810.3390/s16101578s16101578A Novel Zero Velocity Interval Detection Algorithm for Self-Contained Pedestrian Navigation System with Inertial SensorsXiaochun Tian0Jiabin Chen1Yongqiang Han2Jianyu Shang3Nan Li4School of Automation, Beijing Institute of Technology, Beijing 100081, ChinaSchool of Automation, Beijing Institute of Technology, Beijing 100081, ChinaSchool of Automation, Beijing Institute of Technology, Beijing 100081, ChinaSchool of Automation, Beijing Institute of Technology, Beijing 100081, ChinaSchool of Automation, Beijing Institute of Technology, Beijing 100081, ChinaZero velocity update (ZUPT) plays an important role in pedestrian navigation algorithms with the premise that the zero velocity interval (ZVI) should be detected accurately and effectively. A novel adaptive ZVI detection algorithm based on a smoothed pseudo Wigner–Ville distribution to remove multiple frequencies intelligently (SPWVD-RMFI) is proposed in this paper. The novel algorithm adopts the SPWVD-RMFI method to extract the pedestrian gait frequency and to calculate the optimal ZVI detection threshold in real time by establishing the function relationships between the thresholds and the gait frequency; then, the adaptive adjustment of thresholds with gait frequency is realized and improves the ZVI detection precision. To put it into practice, a ZVI detection experiment is carried out; the result shows that compared with the traditional fixed threshold ZVI detection method, the adaptive ZVI detection algorithm can effectively reduce the false and missed detection rate of ZVI; this indicates that the novel algorithm has high detection precision and good robustness. Furthermore, pedestrian trajectory positioning experiments at different walking speeds are carried out to evaluate the influence of the novel algorithm on positioning precision. The results show that the ZVI detected by the adaptive ZVI detection algorithm for pedestrian trajectory calculation can achieve better performance.http://www.mdpi.com/1424-8220/16/10/1578pedestrian navigation system (PNS)adaptive ZVI detectionSPWVDgait frequencyZUPT |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xiaochun Tian Jiabin Chen Yongqiang Han Jianyu Shang Nan Li |
spellingShingle |
Xiaochun Tian Jiabin Chen Yongqiang Han Jianyu Shang Nan Li A Novel Zero Velocity Interval Detection Algorithm for Self-Contained Pedestrian Navigation System with Inertial Sensors Sensors pedestrian navigation system (PNS) adaptive ZVI detection SPWVD gait frequency ZUPT |
author_facet |
Xiaochun Tian Jiabin Chen Yongqiang Han Jianyu Shang Nan Li |
author_sort |
Xiaochun Tian |
title |
A Novel Zero Velocity Interval Detection Algorithm for Self-Contained Pedestrian Navigation System with Inertial Sensors |
title_short |
A Novel Zero Velocity Interval Detection Algorithm for Self-Contained Pedestrian Navigation System with Inertial Sensors |
title_full |
A Novel Zero Velocity Interval Detection Algorithm for Self-Contained Pedestrian Navigation System with Inertial Sensors |
title_fullStr |
A Novel Zero Velocity Interval Detection Algorithm for Self-Contained Pedestrian Navigation System with Inertial Sensors |
title_full_unstemmed |
A Novel Zero Velocity Interval Detection Algorithm for Self-Contained Pedestrian Navigation System with Inertial Sensors |
title_sort |
novel zero velocity interval detection algorithm for self-contained pedestrian navigation system with inertial sensors |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2016-09-01 |
description |
Zero velocity update (ZUPT) plays an important role in pedestrian navigation algorithms with the premise that the zero velocity interval (ZVI) should be detected accurately and effectively. A novel adaptive ZVI detection algorithm based on a smoothed pseudo Wigner–Ville distribution to remove multiple frequencies intelligently (SPWVD-RMFI) is proposed in this paper. The novel algorithm adopts the SPWVD-RMFI method to extract the pedestrian gait frequency and to calculate the optimal ZVI detection threshold in real time by establishing the function relationships between the thresholds and the gait frequency; then, the adaptive adjustment of thresholds with gait frequency is realized and improves the ZVI detection precision. To put it into practice, a ZVI detection experiment is carried out; the result shows that compared with the traditional fixed threshold ZVI detection method, the adaptive ZVI detection algorithm can effectively reduce the false and missed detection rate of ZVI; this indicates that the novel algorithm has high detection precision and good robustness. Furthermore, pedestrian trajectory positioning experiments at different walking speeds are carried out to evaluate the influence of the novel algorithm on positioning precision. The results show that the ZVI detected by the adaptive ZVI detection algorithm for pedestrian trajectory calculation can achieve better performance. |
topic |
pedestrian navigation system (PNS) adaptive ZVI detection SPWVD gait frequency ZUPT |
url |
http://www.mdpi.com/1424-8220/16/10/1578 |
work_keys_str_mv |
AT xiaochuntian anovelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors AT jiabinchen anovelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors AT yongqianghan anovelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors AT jianyushang anovelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors AT nanli anovelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors AT xiaochuntian novelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors AT jiabinchen novelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors AT yongqianghan novelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors AT jianyushang novelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors AT nanli novelzerovelocityintervaldetectionalgorithmforselfcontainedpedestriannavigationsystemwithinertialsensors |
_version_ |
1725252166445170688 |