Browse > Article
http://dx.doi.org/10.11003/JPNT.2018.7.4.217

The Comparison and Analysis of Maritime Precise Positioning using GPS Based Smartphone  

Park, Sul Gee (Maritime Safety and Environment Research Division, Korea Research Institute of Ships and Ocean engineering)
Park, Sang Hyun (Maritime Safety and Environment Research Division, Korea Research Institute of Ships and Ocean engineering)
Publication Information
Journal of Positioning, Navigation, and Timing / v.7, no.4, 2018 , pp. 217-226 More about this Journal
Abstract
According to the Korea Coast Guard's maritime disaster statistics (Korea Coast Guard 2017, Korean Statistical information Service 2018), an average of 2,140 marine accidents occurred every year for the past 6 years and the number of accidents is increasing every year. Among them, maritime accidents of fishing vessels are the most frequent, and recently accidents involving fishing boat and leisure vessels are rapidly increasing as well. In particular, the number of accidents involving leisure vessels increased to about one-third of the accidents of fishing vessels, and emergency rescue requests are increasing every year accordingly. However, the number of crash accidents involving users of small vessels and marine leisure activities are increasing because of the difficulties of installing navigation equipment and electronic navigation charts. Recently, the demand for precise positioning using mobile devices is increasing in the fields of maritime safety, piloting support, and coastal survey. Although various applications of smart devices provide location-based services for users, the measurement results are discontinuous when using the position coordinates of the National Marine Electronics Association (NMEA) calculated by smartphone. Recently, Google announced that they will provide GPS raw data to developers from Android 7.0 Nougat. As a result, developers have an opportunity to receive precise carrier phase and code measurements to make more accurate positioning according to the performance of Android devices. This study analyzed GPS positioning performance using Android devices, and compared and analyzed the positioning performance at sea with high-performance GPS receivers.
Keywords
smartphone; android positioning; android carrier phase measurement; maritime precise positioning;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Banville, S. & van Diggelen, F. 2016, Precise GNSS for everyone: Precise positioning using raw GPS measurements from android smartphones, GPS world, 27, 43-48. http://gpsworld.com/innovation-precise-positioning-usingraw-gps-measurements-from-android-smartphones/
2 Bellad, V. & Marathe, T. 2018, Performance Analysis of Smartphone Measurements based Positioning with External Corrections, Proceedings of ION GNSS 2018, Sept. 24-28, 2018, Miami, Florida, pp.413-431. https://www.ion.org/publications/abstract.cfm?articleID=15926
3 Gim, J. S., & Park, K. D. 2017, Comparison of Positioning Accuracy Using the Pseudorange from Android GPS Raw Measurements, Journal of Advanced Navigation Technology, 21, 514-519. http://kiss.kstudy.com/thesis/thesis-view.asp?key=3554557
4 Google Developers [Internet], cited 2018 Sep. 17, https://developer.android.com/guide/topics/sensors/gnss
5 GSA GNSS Market Report 2017, Agency, E.G., Ed. Publications Office of the Europoean Union: Luxembourg, 2017. https://www.gsa.europa.eu/2017-gnss-market-report
6 Korea Coast Guard 2017, Maritime Distress Accident Statistics Annual Report in 2016, Korea Coast Guard, pp.1-168. http://www.index.go.kr/potal/main/EachDtlPageDetail.do?idx_cd=1621
7 Korean Statistical Information Service [Internet], cited 2018 Oct 08, available from: http://kosis.kr/statHtml/statHtml.do?orgId=155&tblId=TX_15507_A005&conn_path=I2
8 Lu, Y., Ji, S., Chen, W., & Wang, Z. 2018, Assessing the performance of raw measurement from different types of smartphones, Proceedings of International ION GNSS, Sept. 24-28, 2018, Miami, Florida, pp.304-322. https://www.ion.org/publications/abstract.cfm?articleID=15881
9 Navarro-Gallardo, M., Bernhardt, N., Kirchner, M., Redenkiewicz, J., & Sunkevic, M. 2017, Assessing galileo Readiness in Android Devices Using Raw Measurements, Proceedings of International Technical meeting of the ION, Sept. 25-29, 2017, Portland, Oregon, pp.85-100. https://www.ion.org/publications/abstract.cfm?articleID=15183
10 Realini, E., Caldera, S., Pertusini, L., & Sampietro, D. 2017, Precise GNSS Positioning Using Smart Devices, Sensors, 10, 2434, https://doi.org/10.3390/s17102434
11 Riley, S., Lentz, W., & Clare, A. 2017, On the Path to Precision - Observations with Android GNSS Observables, Proceedings of International Technical meeting of the Satellite Division of the ION, Sept. 25-29, 2017, Portland, Oregon, pp.116-129. https://www.ion.org/publications/abstract.cfm?articleID=15244
12 Warnant, R., Van De Vyvere, L., & Warnant, Q. 2018, Positioning with Single and Dual Frequency Smartphones Running Android 7 or Later, Proceedings of ION GNSS, Sept. 24-28, 2018, Miami, Florida, pp.284-303. https://www.ion.org/publications/abstract.cfm?articleID=15880