Comparison of EMG-based and Accelerometer-based Speed Estimation Methods in Pedestrian Dead Reckoning
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Yuwei Chen | Xu Zhang | Xiang Chen | Jianyu Wang | Wei Chen | Ruizhi Chen | Zhongqian Fu | Jianyu Wang | Ruizhi Chen | Yuwei Chen | Xu Zhang | Xiang Chen | Zhongqian Fu | Wei Chen
[1] Desney S. Tan,et al. Demonstrating the feasibility of using forearm electromyography for muscle-computer interfaces , 2008, CHI.
[2] Quentin Ladetto,et al. On foot navigation: continuous step calibration using both complementary recursive prediction and adaptive Kalman filtering , 2000 .
[3] O. Mezentsev,et al. Sensor aiding of HSGPS pedestrian navigation , 2005 .
[4] Kongqiao Wang,et al. Hand Gesture Recognition Research Based on Surface EMG Sensors and 2D-accelerometers , 2007, 2007 11th IEEE International Symposium on Wearable Computers.
[5] D Farina,et al. Effect of electrode location on EMG signal envelope in leg muscles during gait. , 2007, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[6] Yuwei Chen,et al. An adaptive calibration approach for a 2-axis digital compass in a low-cost pedestrian navigation system , 2010, 2010 IEEE Instrumentation & Measurement Technology Conference Proceedings.
[7] Petteri Alahuhta,et al. Location Estimation Indoors by Means of Small Computing Power Devices, Accelerometers, Magnetic Sensors, and Map Knowledge , 2002, Pervasive.
[8] Ling Pei,et al. A DSP-based Multi-sensor Multi-network Positioning Platform , 2009 .
[9] Dong-Hwan Hwang,et al. A Step, Stride and Heading Determination for the Pedestrian Navigation System , 2004 .
[10] Charles K. Toth,et al. A Fuzzy Dead Reckoning Algorithm for a Personal Navigator , 2007 .
[11] G. Retscher. Test and integration of location sensors for a multi-sensor personal navigator , 2007 .
[12] J. Cram,et al. Introduction to Surface Electromyography , 1998 .
[13] Kongqiao Wang,et al. Hand gesture recognition and virtual game control based on 3D accelerometer and EMG sensors , 2009, IUI.
[14] C. Tom Judd,et al. A Personal Dead Reckoning Module , 1997 .
[15] Jukka Saarinen,et al. MEMS-IMU Based Pedestrian Navigator for Handheld Devices , 2001 .
[16] F. Lacquaniti,et al. Five basic muscle activation patterns account for muscle activity during human locomotion , 2004, The Journal of physiology.
[17] Wei Chen,et al. An integrated GPS and multi-sensor pedestrian positioning system for 3D urban navigation , 2009, 2009 Joint Urban Remote Sensing Event.
[18] Alexander Petrovitch,et al. Trunk muscle activation patterns during walking at different speeds. , 2007, Journal of electromyography and kinesiology : official journal of the International Society of Electrophysiological Kinesiology.
[19] Hui Fang,et al. Design of a wireless assisted pedestrian dead reckoning system - the NavMote experience , 2005, IEEE Transactions on Instrumentation and Measurement.
[20] Helena Leppäkoski,et al. Error Analysis of Step Length Estimation in Pedestrian Dead Reckoning , 2002 .
[21] Günther Abwerzger,et al. A Pedestrian Navigation System for Urban and Indoor Environments , 2007 .
[22] Dorota A. Grejner-Brzezinska,et al. Pedestrian tracking and navigation using an adaptive knowledge system based on neural networks , 2007 .
[23] M. E. Cannon,et al. Integrated GPS/INS System for Pedestrian Navigation in a Signal Degraded Environment , 2006 .
[24] Chan Gook Park,et al. MEMS Based Pedestrian Navigation System , 2005 .