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Original Articles

Multi-GNSS precise point positioning with next-generation smartphone measurements

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Mikko Rönneberg & Pyry Kettunen. (2023) A gamified map application utilising crowdsourcing engaged citizens to refine the quality and accuracy of cadastral index map border markers. International Journal of Digital Earth 16:2, pages 4726-4748.
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Articles from other publishers (38)

Robert Odolinski, Hongzhou Yang, Li-Ta Hsu, Mohammed Khider, Guoyu (Michael) Fu & Damien Dusha. Evaluation of the Multi-GNSS, Dual-Frequency RTK Positioning Performance for Recent Android Smartphone Models in a Phone-to-Phone Setup. Evaluation of the Multi-GNSS, Dual-Frequency RTK Positioning Performance for Recent Android Smartphone Models in a Phone-to-Phone Setup.
Sunil Bisnath & John Aggrey. Current Limitations and Prospects for Smartphone GNSS Precise Positioning. Current Limitations and Prospects for Smartphone GNSS Precise Positioning.
J. Rene Vazquez-Ontiveros, Carlos A. Martinez-Felix, Angela Melgarejo-Morales, Leire Retegui-Schiettekatte, G. Esteban Vazquez-Becerra & J. Ramon Gaxiola-Camacho. (2023) Assessing the quality of raw GNSS observations and 3D positioning performance using the Xiaomi Mi 8 dual-frequency smartphone in Northwest Mexico. Earth Science Informatics 17:1, pages 21-35.
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Ding Yi, Jiahuan Hu & Sunil Bisnath. (2024) Improving PPP smartphone processing with adaptive quality control method in obstructed environments when carrier-phase measurements are missing. GPS Solutions 28:1.
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Ruiguang Wang, Chao Hu, Zhongyuan Wang, Fang Yuan & Yangyang Wang. (2023) Performance of Smartphone BDS-3/GPS/Galileo Multi-Frequency Ionosphere-Free Precise Code Positioning. Remote Sensing 15:22, pages 5371.
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Ding Yi & Sihan Yang. Hybridization of Smartphone GNSS PPP/RTK with Native IMU in Realistic Driving Scenarios. Hybridization of Smartphone GNSS PPP/RTK with Native IMU in Realistic Driving Scenarios.
Jiahuan Hu, Pan Li & Sunil Bisnath. Towards GNSS Ambiguity Resolution for Smartphones in Realistic Environments: Characterization of Smartphone Ambiguities with RTK, PPP, and PPP-RTK. Towards GNSS Ambiguity Resolution for Smartphones in Realistic Environments: Characterization of Smartphone Ambiguities with RTK, PPP, and PPP-RTK.
Jiahuan Hu & Sunil Bisnath. Preliminary Assessment of Improved Smartphone GNSS Quality Control Methods Based on Range Errors. Preliminary Assessment of Improved Smartphone GNSS Quality Control Methods Based on Range Errors.
R Stauffer, R Hohensinn, I D Herrera Pinzón, G Moeller, Y Pan, G Kłopotek, B Soja, E Brockmann & M Rothacher. (2023) Estimation of tropospheric parameters with GNSS smartphones in a differential approach. Measurement Science and Technology 34:9, pages 095126.
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Jean-Bernard Uwineza & Jay A. Farrell. (2023) RAIM and Failure Mode Slope: Effects of Increased Number of Measurements and Number of Faults. Sensors 23:10, pages 4947.
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Zihan Peng, Yang Gao, Chengfa Gao, Rui Shang & Lu Gan. (2023) Improving Smartphone GNSS Positioning Accuracy Using Inequality Constraints. Remote Sensing 15:8, pages 2062.
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Caneren Gul & Taylan Ocalan. (2023) A two-stage Kalman filtering approach using GNSS and smartphone sensors for seismogeodetic applications. Advances in Space Research 71:8, pages 3109-3121.
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Iñigo Cortés, Johannes Rossouw van der Merwe, Elena Simona Lohan, Jari Nurmi & Wolfgang Felber. (2023) Evaluation of Low-Complexity Adaptive Full Direct-State Kalman Filter for Robust GNSS Tracking. Sensors 23:7, pages 3658.
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Jiahuan Hu, Ding Yi & Sunil Bisnath. (2023) A Comprehensive Analysis of Smartphone GNSS Range Errors in Realistic Environments. Sensors 23:3, pages 1631.
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Farzaneh Zangenehnejad, Yang Jiang & Yang Gao. (2023) GNSS Observation Generation from Smartphone Android Location API: Performance of Existing Apps, Issues and Improvement. Sensors 23:2, pages 777.
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Sihan Yang, Ding Yi, Sudha Vana,Sunil Bisnath. (2023) Resilient Smartphone Positioning Using Native Sensors and PPP Augmentation. NAVIGATION: Journal of the Institute of Navigation 70:2, pages navi.567.
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Bingcheng Liu, Ang Liu, Lei Chen, Zishen Li, Ningbo Wang, Bo Shao & Liang Wang. (2023) Smartphone-Based Positioning Augmented by BDSBAS Ionospheric Corrections. IEEE Geoscience and Remote Sensing Letters 20, pages 1-5.
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Jiefan Huang, Yingyu Guo, Xuan Li, Ning Zhang, Jiang Jiang & Guangyu Wang. (2022) Evaluation of Positioning Accuracy of Smartphones under Different Canopy Openness. Forests 13:10, pages 1591.
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Zishen Li, Liang Wang, Ningbo Wang, Ran Li & Ang Liu. (2022) Real-time GNSS precise point positioning with smartphones for vehicle navigation. Satellite Navigation 3:1.
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Ding Yi, Sihan Yang & Sunil Bisnath. (2022) Native Smartphone Single- and Dual-Frequency GNSS-PPP/IMU Solution in Real-World Driving Scenarios. Remote Sensing 14:14, pages 3286.
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Chien Zheng Yong, Ken Harima, Eldar Rubinov, Simon McClusky & Robert Odolinski. (2022) Instantaneous Best Integer Equivariant Position Estimation Using Google Pixel 4 Smartphones for Single- and Dual-Frequency, Multi-GNSS Short-Baseline RTK. Sensors 22:10, pages 3772.
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Berkay Bahadur. (2022) A study on the real-time code-based GNSS positioning with Android smartphones. Measurement 194, pages 111078.
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Yanjie Li & Changsheng Cai. (2022) A mixed single- and dual-frequency quad-constellation GNSS precise point positioning approach on Xiaomi Mi8 smartphones. Journal of Navigation, pages 1-15.
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Antonio Angrisano & Salvatore Gaglione. (2022) Smartphone GNSS Performance in an Urban Scenario with RAIM Application. Sensors 22:3, pages 786.
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Shulin Zeng, Cuilin Kuang & Wenkun Yu. (2022) Evaluation of Real-Time Kinematic Positioning and Deformation Monitoring Using Xiaomi Mi 8 Smartphone. Applied Sciences 12:1, pages 435.
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Chien Zheng Yong, Robert Odolinski, Safoora Zaminpardaz, Michael Moore, Eldar Rubinov, Jeremiah Er & Mike Denham. (2021) Instantaneous, Dual-Frequency, Multi-GNSS Precise RTK Positioning Using Google Pixel 4 and Samsung Galaxy S20 Smartphones for Zero and Short Baselines. Sensors 21:24, pages 8318.
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Min Li, Zhuo Lei, Wenwen Li, Kecai Jiang, Tengda Huang, Jiawei Zheng & Qile Zhao. (2021) Performance Evaluation of Single-Frequency Precise Point Positioning and Its Use in the Android Smartphone. Remote Sensing 13:23, pages 4894.
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Ganga Shinghal & Sunil Bisnath. (2021) Conditioning and PPP processing of smartphone GNSS measurements in realistic environments. Satellite Navigation 2:1.
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Farzaneh Zangenehnejad & Yang Gao. (2021) GNSS smartphones positioning: advances, challenges, opportunities, and future perspectives. Satellite Navigation 2:1.
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Lorenzo Benvenuto, Paolo Dabove, Ilaria Ferrando & Domenico Sguerso. (2021) Preliminary Results on Tropospheric ZTD Estimation by Smartphone. Remote Sensing 13:22, pages 4567.
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Ding Yi, Sunil Bisnath, Nacer Naciri & Sudha Vana. (2021) Effects of ionospheric constraints in Precise Point Positioning processing of geodetic, low-cost and smartphone GNSS measurements. Measurement 183, pages 109887.
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Weiguo Li. (2021) Assessment of multi-GNSS precise orbit and clock products from different analysis centers based on precise point positioning. Acta Geodynamica et Geomaterialia, pages 387-397.
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Liang Wang, Zishen Li, Ningbo Wang & Zhiyu Wang. (2021) Real-time GNSS precise point positioning for low-cost smart devices. GPS Solutions 25:2.
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María Jesús Jiménez-Martínez, Mercedes Farjas-Abadia & Nieves Quesada-Olmo. (2021) An Approach to Improving GNSS Positioning Accuracy Using Several GNSS Devices. Remote Sensing 13:6, pages 1149.
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Kaifei He, Duojie Weng, Shengyue Ji, Zhenjie Wang, Wu Chen & Yangwei Lu. (2020) Ocean Real-Time Precise Point Positioning with the BeiDou Short-Message Service. Remote Sensing 12:24, pages 4167.
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Jacek Paziewski. (2020) Recent advances and perspectives for positioning and applications with smartphone GNSS observations. Measurement Science and Technology 31:9, pages 091001.
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Robert Odolinski & Peter J. G. Teunissen. (2020) Best integer equivariant estimation: performance analysis using real data collected by low-cost, single- and dual-frequency, multi-GNSS receivers for short- to long-baseline RTK positioning. Journal of Geodesy 94:9.
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Sunil Bisnath. (2020) PPP: Perhaps the natural processing mode for precise GNSS PNT. PPP: Perhaps the natural processing mode for precise GNSS PNT.

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