Gamified Mobile Applications for Improving Driving Behavior: A Systematic Mapping Study
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Ali Idri | Ahmed Zellou | Taoufik Rachad | Abderrahim El hafidy | A. Idri | A. Zellou | Taoufik Rachad
[1] Soumya Banerjee,et al. Exploring the forecasting approach for road accidents: Analytical measures with hybrid machine learning , 2020, Expert Syst. Appl..
[2] C. Wu,et al. dWatch: A Reliable and Low-Power Drowsiness Detection System for Drivers Based on Mobile Devices , 2020, ACM Trans. Sens. Networks.
[3] Teck Kai Chan,et al. A Comprehensive Review of Driver Behavior Analysis Utilizing Smartphones , 2020, IEEE Transactions on Intelligent Transportation Systems.
[4] Eleni I. Vlahogianni,et al. Smartphone sensing for understanding driving behavior: Current practice and challenges , 2020 .
[5] Monica Wachowicz,et al. A Holistic Overview of Anticipatory Learning for the Internet of Moving Things: Research Challenges and Opportunities , 2020, ISPRS Int. J. Geo Inf..
[6] Leonard Barolli,et al. Fuzzy-based Driver Monitoring System (FDMS): Implementation of two intelligent FDMSs and a testbed for safe driving in VANETs , 2020, Future Gener. Comput. Syst..
[7] Ali Idri,et al. Intelligent Mobile Applications: A Systematic Mapping Study , 2020, Mob. Inf. Syst..
[8] Rathin Chandra Shit,et al. Crowd intelligence for sustainable futuristic intelligent transportation system: a review , 2020, IET Intelligent Transport Systems.
[9] Lanouar Charfeddine,et al. Risk factors of road accident severity and the development of a new system for prevention: New insights from China. , 2020, Accident; analysis and prevention.
[10] Carmen Forciniti,et al. Factors influencing accident severity: an analysis by road accident type , 2020, Transportation Research Procedia.
[11] Fenglong Ma,et al. A Reliability-Aware Vehicular Crowdsensing System for Pothole Profiling , 2019, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[12] Subramanian Arumugam,et al. A survey on driving behavior analysis in usage based insurance using big data , 2019, Journal of Big Data.
[13] Venkata N. Padmanabhan,et al. ALT: towards automating driver license testing using smartphones , 2019, SenSys.
[14] George Yannis,et al. Analysis of driver behaviour through smartphone data: The case of mobile phone use while driving , 2019, Safety Science.
[15] Eleni I. Vlahogianni,et al. Identifying driving safety profiles from smartphone data using unsupervised learning , 2019, Safety Science.
[16] E. Fort,et al. Medical and socio-occupational predictive factors of psychological distress 5 years after a road accident: a prospective study , 2019, Social Psychiatry and Psychiatric Epidemiology.
[17] Luis Miguel Bergasa,et al. Naturalistic Driving Study for Older Drivers based on the DriveSafe App , 2019, 2019 IEEE Intelligent Transportation Systems Conference (ITSC).
[18] Pattie Maes,et al. AttentivU: Designing EEG and EOG Compatible Glasses for Physiological Sensing and Feedback in the Car , 2019, AutomotiveUI.
[19] Chong Wang,et al. Monitoring Driver Behaviour with BackPocketDriver , 2019, MobiWIS.
[20] Stefan Poslad,et al. Eco-driving Profiling and Behavioral Shifts Using IoT Vehicular Sensors Combined with Serious Games , 2019, 2019 IEEE Conference on Games (CoG).
[21] G. Xing,et al. RAMT: Real-time Attitude and Motion Tracking for Mobile Devices in Moving Vehicle , 2019, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[22] Guoliang Xing,et al. RAMT: Real-time Attitude and Motion Tracking for Mobile Devices in Moving Vehicle , 2019, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[23] Alexander Stocker,et al. A Lightweight Framework for Multi-device Integration and Multi-sensor Fusion to Explore Driver Distraction , 2019, CAiSE.
[24] Paolo Napoletano,et al. Multimodal Car Driver Stress Recognition , 2019, PervasiveHealth.
[25] Alexey Kashevnik,et al. Driver Intelligent Support System in Internet of Transportation Things: Smartphone-Based Approach , 2019, 2019 14th Annual Conference System of Systems Engineering (SoSE).
[26] Fan Li,et al. D3-Guard: Acoustic-based Drowsy Driving Detection Using Smartphones , 2019, IEEE INFOCOM 2019 - IEEE Conference on Computer Communications.
[27] Vanessa Wan Sze Cheng,et al. Gamification in Apps and Technologies for Improving Mental Health and Well-Being: Systematic Review , 2019, JMIR mental health.
[28] Stratis Kanarachos,et al. Learning Driver Braking Behavior Using Smartphones, Neural Networks and the Sliding Correlation Coefficient: Road Anomaly Case Study , 2019, IEEE Transactions on Intelligent Transportation Systems.
[29] Emmanuelle Diaz,et al. Detection and prediction of driver drowsiness using artificial neural network models. , 2017, Accident; analysis and prevention.
[30] Ahmed Tlili,et al. Data Analytics Approaches in Educational Games and Gamification Systems: Summary, Challenges, and Future Insights , 2019, Data Analytics Approaches in Educational Games and Gamification Systems.
[31] Kazuya Takeda,et al. Impact of Driver Behavior on Fuel Consumption: Classification, Evaluation and Prediction Using Machine Learning , 2019, IEEE Access.
[32] Seema Verma,et al. Smartphone based context-aware driver behavior classification using dynamic bayesian network , 2019, J. Intell. Fuzzy Syst..
[33] Atiyeh Vaezipour,et al. A simulator study of the effect of incentive on adoption and effectiveness of an in-vehicle human machine interface , 2019, Transportation Research Part F: Traffic Psychology and Behaviour.
[34] Liyana Shuib,et al. Development of a Mobile Game Application to Boost Students’ Motivation in Learning English Vocabulary , 2019, IEEE Access.
[35] Ioannis Chatzigiannakis,et al. Exploiting Gamification to Improve Eco-driving Behaviour: The GamECAR Approach , 2019, BRAINS/WS-AFFIN@AmI.
[36] Venkata N. Padmanabhan,et al. FarSight: A Smartphone-based Vehicle Ranging System , 2018, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[37] V. Padmanabhan,et al. FarSight , 2018, Proceedings of the ACM on Interactive, Mobile, Wearable and Ubiquitous Technologies.
[38] Takahiro Tanaka,et al. Driving Behavior Improvement through Driving Support and Review Support from Driver Agent , 2018, HAI.
[39] Venkata N. Padmanabhan,et al. DeepLane: camera-assisted GPS for driving lane detection , 2018, BuildSys@SenSys.
[40] Vaninha Vieira,et al. CDNA: A Context-Aware Notification System for Driver Interruption , 2018, IHC.
[41] Johann Schrammel,et al. From mobility patterns to behavioural change: leveraging travel behaviour and personality profiles to nudge for sustainable transportation , 2018, Journal of Intelligent Information Systems.
[42] Tobias H. Mølbak,et al. DARA , 2018, Proceedings of the 10th Nordic Conference on Human-Computer Interaction.
[43] SoberMotion: Leveraging the Force of Probation Officers to Reduce the Risk of DUI Recidivism , 2018, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[44] Yi-Ju Chung,et al. SoberMotion: Leveraging the Force of Probation Officers to Reduce the Risk of DUI Recidivism , 2018, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[45] Emanuele Panizzi,et al. A framework to enhance the user experience of car mobile applications , 2018, MobileHCI Adjunct.
[46] Leonardo Trujillo,et al. A Genetic Programming Approach for Driving Score Calculation in the Context of Intelligent Transportation Systems , 2018, IEEE Sensors Journal.
[47] Sigrid Schefer-Wenzl,et al. Teaching Software Engineering with Gamification Elements , 2018, Int. J. Adv. Corp. Learn..
[48] Sezer Gören,et al. Improving Driver Behavior Using Gamification , 2018, MobiWIS.
[49] Gheorghe Mogan,et al. Effects of smartphone based advanced driver assistance system on distracted driving behavior: A simulator study , 2018, Comput. Hum. Behav..
[50] Felix Wortmann,et al. The Impact of Abstract vs. Concrete Feedback Design on Behavior Insights from a Large Eco-Driving Field Experiment , 2018, CHI.
[51] Abdellah Kaci,et al. Mobile cloud system for road safety , 2018, ICGDA.
[52] J. Torous,et al. A Hierarchical Framework for Evaluation and Informed Decision Making Regarding Smartphone Apps for Clinical Care. , 2018, Psychiatric services.
[53] Xue Liu,et al. SafeDrive , 2018, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[54] Sarbani Roy,et al. Smartphone based system for real-time aggressive driving detection and marking rash driving-prone areas , 2018, ICDCN Workshops.
[55] Tao Zhang,et al. ProCMotive: Bringing Programability and Connectivity into Isolated Vehicles , 2018, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[56] ProCMotive: Bringing Programability and Connectivity into Isolated Vehicles , 2017, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[57] Nava Pliskin,et al. The effects of a fleet-Management App on Driver Behavior , 2018, ECIS.
[58] G. Xing,et al. SafeDrive: Detecting Distracted Driving Behaviors Using Wrist-Worn Devices , 2018, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[59] Erez Shmueli,et al. Money Drives , 2018, Proc. ACM Interact. Mob. Wearable Ubiquitous Technol..
[60] H.M.N. Dilum Bandara,et al. Vehicular data acquisition and analytics system for real-time driver behavior monitoring and anomaly detection , 2017, 2017 IEEE International Conference on Industrial and Information Systems (ICIIS).
[61] Adam Ziebinski,et al. Review of advanced driver assistance systems (ADAS) , 2017 .
[62] Gustavo Fortes Tondello,et al. Elements of Gameful Design Emerging from User Preferences , 2017, CHI PLAY.
[63] Ronald Schroeter,et al. From road distraction to safe driving: Evaluating the effects of boredom and gamification on driving behaviour, physiological arousal, and subjective experience , 2017, Comput. Hum. Behav..
[64] Dong Hoon Lee,et al. WheelLogger: Driver Tracing Using Smart Watch , 2017, WISA.
[65] Daniel M. Johnson,et al. Driven to drive? Investigating the effect of gamification on learner driver behavior, perceived motivation and user experience , 2017, Comput. Hum. Behav..
[66] Uichin Lee,et al. WatchOut: Facilitating Safe Driving Behaviors with Social Support , 2017, CHI Extended Abstracts.
[67] Daniel M. Johnson,et al. Designing Gamified Applications that Make Safe Driving More Engaging , 2017, CHI.
[68] Uichin Lee,et al. Facilitating Pervasive Community Policing on the Road with Mobile Roadwatch , 2017, CHI.
[69] Paul Welsh,et al. Association between active commuting and incident cardiovascular disease, cancer, and mortality: prospective cohort study , 2017, British Medical Journal.
[70] Shen Li,et al. GreenDrive: A Smartphone-Based Intelligent Speed Adaptation System with Real-Time Traffic Signal Prediction , 2017, 2017 ACM/IEEE 8th International Conference on Cyber-Physical Systems (ICCPS).
[71] Yoshihiko Suhara,et al. Driver behavior profiling: An investigation with different smartphone sensors and machine learning , 2017, PloS one.
[72] Paola Salomoni,et al. In-vehicle Human Machine Interface: An Approach to Enhance Eco-Driving Behaviors , 2017, SmartObject@IUI.
[73] Amir Dirin,et al. Sustainable usage through emotional engagement: a user experience analysis of an adaptive driving school application , 2017, Cognition, Technology & Work.
[74] Ronald Schroeter,et al. Engaged drivers - safe drivers: Gathering real-time data from mobile and wearable devices for safe-driving apps , 2017 .
[75] Seema Verma,et al. A survey on driver behavior detection techniques for intelligent transportation systems , 2017, 2017 7th International Conference on Cloud Computing, Data Science & Engineering - Confluence.
[76] Maurizio Morisio,et al. Mood-Based On-Car Music Recommendations , 2016, INISCOM.
[77] Adam Ziebinski,et al. A Survey of ADAS Technologies for the Future Perspective of Sensor Fusion , 2016, ICCCI.
[78] Matevz Pogacnik,et al. Smart Driving: Influence of Context and Behavioral Data on Driving Style , 2016, NEW2AN.
[79] Vana Kalogeraki,et al. CrowdAlert: a mobile app for event reporting and user alerting in real-time , 2016, UbiComp Adjunct.
[80] Patrick Hosein,et al. Application for the Detection of Dangerous Driving and an Associated Gamification Framework , 2016, 2016 IEEE 4th International Conference on Future Internet of Things and Cloud Workshops (FiCloudW).
[81] Atiyeh Vaezipour,et al. Design of a Gamified Interface to Improve Fuel Efficiency and Safe Driving , 2016, HCI.
[82] Stephen M. Schueller,et al. Exploring mental health providers' interest in using web and mobile-based tools in their practices , 2016, Internet interventions.
[83] Avik Ghose,et al. An enhanced automated system for evaluating harsh driving using smartphone sensors , 2016, ICDCN.
[84] I Diane Cooper,et al. What is a "mapping study?". , 2016, Journal of the Medical Library Association : JMLA.
[85] Hengchang Liu,et al. SmartRoad , 2015, ACM Trans. Sens. Networks.
[86] Hossam S. Hassanein,et al. Scalable Transportation Monitoring using the Smartphone Road Monitoring (SRoM) System , 2015, DIVANet@MSWiM.
[87] Victor C. M. Leung,et al. SAfeDJ , 2015 .
[88] Victor C. M. Leung,et al. SAfeDJ , 2015, ACM Trans. Multim. Comput. Commun. Appl..
[89] Alexander V. Smirnov,et al. Ontology-Based Approach and Implementation of ADAS System for Mobile Device Use While Driving , 2015, KESW.
[90] Nirvana Meratnia,et al. A smartphone based method to enhance road pavement anomaly detection by analyzing the driver behavior , 2015, UbiComp/ISWC Adjunct.
[91] Guillaume Saint Pierre,et al. An android based ecodriving assistance system to improve safety and efficiency of internal combustion engine passenger cars , 2015 .
[92] Christian A. Müller,et al. Tailoring mobile apps for safe on-road usage: how an interaction concept enables safe interaction with hotel booking, news, Wolfram Alpha and Facebook , 2015, AutomotiveUI.
[93] Kai Petersen,et al. Guidelines for conducting systematic mapping studies in software engineering: An update , 2015, Inf. Softw. Technol..
[94] T. Abdelzaher,et al. SmartRoad , 2015 .
[95] Bratislav Predic,et al. Enhancing driver situational awareness through crowd intelligence , 2015, Expert Syst. Appl..
[96] Klaus Bengler,et al. Malfunction of a Traffic Light Assistant Application on a Smartphone , 2015, ECCE.
[97] Minglu Li,et al. D3: Abnormal driving behaviors detection and identification using smartphone sensors , 2015, 2015 12th Annual IEEE International Conference on Sensing, Communication, and Networking (SECON).
[98] H. M. N. Dilum Bandara,et al. Cloud-based driver monitoring and vehicle diagnostic with OBD2 telematics , 2015, 2015 Fifteenth International Conference on Advances in ICT for Emerging Regions (ICTer).
[99] Omid Dehzangi,et al. Multi-Modal Biological Driver Monitoring via Ubiquitous Wearable Body Sensor Network , 2015, Digital Health.
[100] Peter Vink,et al. The Smart Steering Wheel Cover: Motivating Safe and Efficient Driving , 2015, CHI Extended Abstracts.
[101] Hesham A. Rakha,et al. Applying Machine Learning Techniques to Transportation Mode Recognition Using Mobile Phone Sensor Data , 2015, IEEE Transactions on Intelligent Transportation Systems.
[102] Tobias Dehling,et al. Exploring the Far Side of Mobile Health: Information Security and Privacy of Mobile Health Apps on iOS and Android , 2015, JMIR mHealth and uHealth.
[103] Thierry Derrmann,et al. Driver Behavior Profiling Using Smartphones: A Low-Cost Platform for Driver Monitoring , 2015, IEEE Intelligent Transportation Systems Magazine.
[104] Manfred Tscheligi,et al. Bet4EcoDrive: - Betting for Economical Driving , 2015, PERSUASIVE.
[105] Edmond C. Prakash,et al. Introduction to Gamification , 2015 .
[106] Marcela D. Rodríguez,et al. Ambient Gamification of Automobile Driving to Encourage Safety Behaviors , 2014, UCAmI.
[107] Marcela D. Rodríguez,et al. In-car Ambient Displays for Safety Driving Gamification , 2014, MexIHC '14.
[108] Andreas Möller,et al. Gamified training for vehicular user interfaces — Effects on drivers' behavior , 2014, 2014 International Conference on Connected Vehicles and Expo (ICCVE).
[109] Antti Jylhä,et al. Towards an Applied Gamification Model for Tracking, Managing, & Encouraging Sustainable Travel Behaviours , 2014, EAI Endorsed Trans. Ambient Syst..
[110] Yoonsook Hwang,et al. Driver Workload Characteristics Analysis Using EEG Data From an Urban Road , 2014, IEEE Transactions on Intelligent Transportation Systems.
[111] Adrian E. Bauman,et al. Driving: A Road to Unhealthy Lifestyles and Poor Health Outcomes , 2014, PloS one.
[112] Luis Miguel Bergasa,et al. DriveSafe: An app for alerting inattentive drivers and scoring driving behaviors , 2014, 2014 IEEE Intelligent Vehicles Symposium Proceedings.
[113] Kevin Werbach,et al. (Re)Defining Gamification: A Process Approach , 2014, PERSUASIVE.
[114] Jin-Hyuk Hong,et al. A smartphone-based sensing platform to model aggressive driving behaviors , 2014, CHI.
[115] Sebastian Lins,et al. Gamifying Information Systems - a synthesis of Gamification mechanics and Dynamics , 2014, ECIS.
[116] Mario Muñoz Organero,et al. The Impact of Using Gamification on the Eco-driving Learning , 2014, ISAmI.
[117] Andreas Möller,et al. Gameful design in the automotive domain: review, outlook and challenges , 2013, AutomotiveUI.
[118] Stefan Schneegaß,et al. A data set of real world driving to assess driver workload , 2013, AutomotiveUI.
[119] Albrecht Schmidt,et al. Exploring user expectations for context and road video sharing while calling and driving , 2013, AutomotiveUI.
[120] Thomas Engel,et al. Driver diaries: a multimodal mobility behaviour logging methodology , 2013, AutomotiveUI.
[121] Roland Klemke,et al. Energy-Efficient and Safe Driving Using a Situation-Aware Gamification Approach in Logistics , 2013, GALA.
[122] Andrea Emilio Rizzoli,et al. Using Smartphones to Profile Mobility Patterns in a Living Lab for the Transition to E-mobility , 2013, ISESS.
[123] Janet Wesson,et al. Using machine learning to predict the driving context whilst driving , 2013, SAICSIT '13.
[124] Cecilia Mascolo,et al. ParkSense: a smartphone based sensing system for on-street parking , 2013, MobiCom.
[125] Cynthia Breazeal,et al. Reducing Driver Task Load and Promoting Sociability through an Affective Intelligent Driving Agent (AIDA) , 2013, INTERACT.
[126] Taysheng Jeng,et al. GreenSense: Developing Persuasive Service Technology by Integrating Mobile Devices and Social Interaction for Sustainable and Healthy Behavior , 2013, HCI.
[127] Jan Dirk L. Fijnheer,et al. Gamification , 2019, Encyclopedia of Education and Information Technologies.
[128] Thomas J. Bao,et al. CarSafe app: alerting drowsy and distracted drivers using dual cameras on smartphones , 2013, MobiSys '13.
[129] Florian Michahelles,et al. Driving behavior analysis with smartphones: insights from a controlled field study , 2012, MUM.
[130] K. Werbach,et al. For the Win: How Game Thinking Can Revolutionize Your Business , 2012 .
[131] Elgar Fleisch,et al. Providing eco-driving feedback to corporate car drivers: what impact does a smartphone application have on their fuel efficiency? , 2012, UbiComp.
[132] Jordi Herrera-Joancomartí,et al. Users as Smart Sensors: A Mobile Platform for Sensing Public Transport Incidents , 2012, CitiSens.
[133] Erhan Akin,et al. Estimating driving behavior by a smartphone , 2012, 2012 IEEE Intelligent Vehicles Symposium.
[134] Fergal McCaffery,et al. The Gamification of SPICE , 2012, SPICE.
[135] Abdulmotaleb El-Saddik,et al. Motion-path based in car gesture control of the multimedia devices , 2011, DIVANet '11.
[136] Lennart E. Nacke,et al. From game design elements to gamefulness: defining "gamification" , 2011, MindTrek.
[137] Andreas Butz,et al. EcoChallenge: a race for efficiency , 2011, Mobile HCI.
[138] Muhammad Ali Babar,et al. Identifying relevant studies in software engineering , 2011, Inf. Softw. Technol..
[139] Kenton O'Hara,et al. Gamification. using game-design elements in non-gaming contexts , 2011, CHI Extended Abstracts.
[140] Zarinah Mohd Kasirun,et al. Gamification towards sustainable mobile application , 2011, 2011 Malaysian Conference in Software Engineering.
[141] Nicu Sebe,et al. Challenges of Human Behavior Understanding , 2010, HBU.
[142] E. Tacconelli. Systematic reviews: CRD's guidance for undertaking reviews in health care , 2010 .
[143] Alois Ferscha,et al. Heart on the road: HRV analysis for monitoring a driver's affective state , 2009, AutomotiveUI.
[144] Per Runeson,et al. Tutorial: Case Studies in Software Engineering , 2009, PROFES.
[145] Kai Petersen,et al. Systematic Mapping Studies in Software Engineering , 2008, EASE.
[146] 古田 真也,et al. Driver condition estimation apparatus, a server, a driver information collecting apparatus and the driver condition estimation system , 2006 .
[147] Andry Rakotonirainy,et al. In-vehicle Technologies, Advanced Driver Assistance Systems and Driver Distraction: Research challenges , 2005 .
[148] P. Stone. Popping the (PICO) question in research and evidence-based practice. , 2002, Applied nursing research : ANR.
[149] M. Satyanarayanan,et al. Mobile computing , 1993, Computer.
[150] Lennart E. Nacke,et al. Gamification : Toward a Definition , 2022 .