M. Corno, D. Berretta, P. Spagnol, and S. M. Savaresi, “Design, control, and validation of a charge-sustaining parallel hybrid bicycle,”IEEE T. Contr. Syst. T., vol. 24, pp. 817-829, 2016.10.1109/TCST.2015.2473821
R. Bini and F. Carpes, “Measuring Pedal Forces,” in Biomechanics of Cycling, R. R. Bini and F. P. Carpes, Eds., ed: Springer International Publishing, 2014, pp. 13-21.10.1007/978-3-319-05539-8_2
R. Tielert, N. Wehn, T. Jaitner, and R. Volk, “Power Measurement in Cycling using inductive Coupling of Energy and Data (P80),” in The Engineering of Sport 7, ed: Springer Paris, 2008, pp. 397-403.10.1007/978-2-287-09411-8_47
O. V. Casas, R. Dalazen, and A. Balbinot, “3D load cell for measure force in a bicycle crank,” Measurement, vol. 93, pp. 189-201, 2016.10.1016/j.measurement.2016.07.031
S. K. Gharghan, R. Nordin & M. Ismail. Empirical investigation of pedal power calculation techniques for track cycling performance measurement. IEEE Student Conference on Research and Development (SCOReD). pp. 48-53, 2013.10.1109/SCOReD.2013.7002539
B. Wainwright, C. Brian Cooke, and J. Paul O’Hara, “The validity and reliability of a sample of 10 Wattbike cycle ergometers,” J. Sport. Sci., pp. 1-8, 2016.10.1080/02640414.2016.121549527552233
L. Rylands, S. J. Roberts, M. Cheetham, and A. Baker, “Velocity production in elite BMX riders: a field based study using a SRM power meter,” Journal of Exercise Physiology Online, vol. 16, pp. 40-50, 2013.
J.-M. Drouet, Y. Champoux, and S. Dorel, “Development of Multi-platform Instrumented Force Pedals for Track Cycling (P49),” in The Engineering of Sport 7, ed: Springer Paris, 2008, pp. 263-271.10.1007/978-2-287-09411-8_32
P. Barratt, “SRM Torque Analysis of Standing Starts in Track Cycling (P85),” in The Engineering of Sport 7, ed: Springer Paris, 2008, pp. 443-448.10.1007/978-2-287-09411-8_52
P. Spagnol, M. Corno, and S. Savaresi, “Pedaling torque reconstruction for half pedaling sensor,” in Proc. IEEE European Control Conference (ECC), 2013, pp. 275-280.10.23919/ECC.2013.6669315
D. Bibbo, S. Conforto, I. Bernabucci, M. Schmid, and T. D’Alessio, “A wireless integrated system to evaluate efficiency indexes in real time during cycling,” in Proc. 4th European Conference of the International Federation for Medical and Biological Engineering. vol. 22, J. Vander Sloten, P. Verdonck, M. Nyssen, and J. Haueisen, Eds., ed: Springer Berlin Heidelberg, 2009, pp. 89-92.10.1007/978-3-540-89208-3_23
J. Vanwalleghem, F. Mortier, I. De Baere, M. Loccufier, and W. Van Paepegem, “Instrumentation of a racing bicycle for outdoor field testing and evaluation of the cyclist’s comfort perception,” in Proc. 15th International Conference on Experimental Mechanics (ICEM15), July 2012, pp. 1-12.
S. Dorel, J. M. Drouet, F. Hug, P. M. Lepretre, and Y. Champoux, “New instrumented pedals to quantify 2D forces at the shoe-pedal interface in ecological conditions: preliminary study in elite track cyclists,” Comput. Methods Biomech. Biomed. Eng., vol. 11, pp. 89-90, 2008.10.1080/10255840802297275
D. Koutny, D. Palousek, P. Stoklasek, J. Rosicky, L. Tepla, M. Prochazkova, et al., “The Biomechanics of Cycling with a Transtibial Prosthesis: A Case Study of a Professional Cyclist,” International Journal of Medical, Health, Biomedical, Bioengineering and Pharmaceutical Engineering, vol. 7, pp. 537-542, 2013.
A. Balbinot, C. Milani, and J. d. S. B. Nascimento, “A New Crank Arm-Based Load Cell for the 3D Analysis of the Force Applied by a Cyclist,” Sensors, vol. 14, pp. 22921-22939, 2014.
W. C. Ang, P. Kropelnicki, J. M. L. Tsai, K. C. Leong, and C. S. Tan, “Design, Simulation and Characterization of Wheatstone Bridge Structured Metal Thin Film Uncooled Microbolometer,” Procedia Eng., vol. 94, pp. 6-13, 2014.10.1016/j.proeng.2013.10.013
Strain gauges absolute precision from HBM. Available:http://www.hbm.com/fileadmin/mediapool/hbmdoc/technical/s1265.pdf (accessed on 20 September 2014).
M. d. C. Curras-Francos, J. Diz-Bugarin, J. R. Garcia-Vila, and A. Orte-Caballero, “Cooperative Development of an Arduino-Compatible Building Automation System for the Practical Teaching of Electronics,” IEEE-RITA, vol. 9, pp. 91-97, 2014.10.1109/RITA.2014.2340015
N. C. Batista, R. Melício, and V. M. F. Mendes, “Layered Smart Grid architecture approach and field tests by ZigBee technology,” Energy Conv. Manag., vol. 88, pp. 49-59, 2014.10.1016/j.enconman.2014.08.020
H. Kemis, N. Bruce, P. Wang, T. Antonio, G. Lee Byung, and L. Hoon Jae, “Healthcare monitoring application in ubiquitous sensor network: Design and implementation based on pulse sensor with arduino,” in Proc. IEEE 6th International Conference on New Trends in Information Science and Service Science and Data Mining (ISSDM), Taipei, 2012, pp. 3438.
N. S. A. Zulkifli, F. K. C. Harun, and N. S. Azahar, “XBee wireless sensor networks for Heart Rate Monitoring in sport training,” in Proc. IEEE International Conference on Biomedical Engineering (ICoBE) Penang, Malaysia, 2012, pp. 441-444.10.1109/ICoBE.2012.6179054
Y. F. Solahuddin and W. Ismail, “Data fusion for reducing power consumption in Arduino- XBee wireless sensor network platform,” in Proc. IEEE International Conference on Computer and Information Sciences (ICCOINS), Kuala Lumpur, Malaysia, 2014, pp. 1-6.10.1109/ICCOINS.2014.6868379
D. Djenouri, N. Merabtine, F. Z. Mekahlia, and M. Doudou, “Fast distributed multi-hop relative time synchronization protocol and estimators for wireless sensor networks,” Ad Hoc Netw., vol. 11, pp. 2329-2344, 2013.
V. Georgitzikis, O. Akribopoulos, and I. Chatzigiannakis, “Controlling Physical Objects via the Internet using the Arduino Platform over 802.15.4 Networks,” IEEE Latin America Trans. (Revista IEEE America Latina), vol. 10, pp. 1686-1689, 2012.
T. Paul J., C. Stuart J., E. Tammie R., G. A. Scott, and K. Justin G., “Comparison of ergometer- and track-based testing in junior track-sprint cyclists. Implications for talent identification and development,” J. Sport. Sci., pp. 1-7, 2016.
G. Kiokes, C. Vossou, P. Chatzistamatis, S. M. Potirakis, S. Vassiliadis, K. Prekas, et al., “Performance Evaluation of a Communication Protocol for Vital Signs Sensors Used for the Monitoring of Athletes,” Int. J. Distrib. Sens. Netw., vol. 2014, p. 13, 2014.
S. K. Gharghan, R. Nordin & M. Ismail. A Survey on Energy Efficient Wireless Sensor Networks for Bicycle Performance Monitoring Application. J. Sensors vol. 2014, pages 16, 2014.
Jun Yu and Xueying Zhang, “A Cross-Layer Wireless Sensor Network Energy-Efficient Communication Protocol for Real-Time Monitoring of the Long-Distance Electric Transmission Lines,” J. Sensors, Article ID 515247, in press, 2015.10.1155/2015/515247
J. Hughes, J. Yan, and K. Soga, “Development of wireless sensor network using bluetooth low energy (BLE) for construction noise monitoring,” International Journal on Smart Sensing and Intelligent Systems, vol. 8, pp. 1379-1405, 2015.
S. K. Gharghan, R. Nordin, M. Ismail & J. Abd Ali. Accurate Wireless Sensor Localization Technique based on Hybrid PSO-ANN Algorithm for Indoor and Outdoor Track Cycling. IEEE Sens. J., vol. 16, pp. 529 - 541, 2016.10.1109/JSEN.2015.2483745
N. K. Suryadevara, S. C. Mukhopadhyay, S. D. T. Kelly, and S. P. S. Gill, “WSN-Based Smart Sensors and Actuator for Power Management in Intelligent Buildings,” IEEE/ASME Trans. Mechatronics, vol. 20, pp. 564-571, 2015.10.1109/TMECH.2014.2301716
W.-T. Sung, J.-H. Chen, and C.-L. Hsiao, “Data fusion for PT100 temperature sensing system heating control model,” Measurement, vol. 52, pp. 94-101, 2014.10.1016/j.measurement.2014.02.011
C.-J. Lin, C. R. Lin, S.-K. Yu, G.-X. Liu, C.-W. Hung, and H.-P. Lin, Applied measurement system. In Study on Wireless Torque Measurement Using SAW Sensors: InTech, 2012.10.5772/36452
F. N. Guerrero, E. M. Spinelli, and M. A. Haberman, “Analysis and Simple Circuit Design of Double Differential EMG Active Electrode,” IEEE T Biomed. Circ. S., vol. 10, pp. 787-795, 2016.10.1109/TBCAS.2015.249294426841414
A. Ali, M. R. Mughal, H. Ali, and L. Reyneri, “Innovative power management, attitude determination and control tile for Cube Sat standard Nano Satellites,” Acta Astronaut., vol. 96, pp. 116-127, 2014.10.1016/j.actaastro.2013.11.013
L.-T. Yang, Y. Nagata, K. Otani, Y. Kado, Y. Otsuji, and M. Takeuchi, “Feasibility of one- beat real-time full-volume three-dimensional echocardiography for assessing left ventricular volumes and deformation parameters,” J. Am. Soc. of Echocardiog., vol. 29, pp. 853-860, 2016.10.1016/j.echo.2016.05.00127302414
A. Ferrari, P. Ginis, M. Hardegger, F. Casamassima, L. Rocchi, and L. Chiari, “A Mobile Kalman-Filter Based Solution for the Real-Time Estimation of Spatio-Temporal Gait Parameters,” IEEE T. Neur. Sys. Reh., vol. 24, pp. 764-773, 2016.10.1109/TNSRE.2015.245751126259246
S. K. Gharghan, R. Nordin & M. Ismail 2015. Statistical validation of performance of ZigBee-based wireless sensor network for track cycling. International Conference on Smart Sensors and Application (ICSSA), pp. 44-49, 2015.10.1109/ICSSA.2015.7322508
S. M. Rodger, D. J. Plews, J. McQuillan, and M. W. Driller, “Evaluation of the Cyclus cycle ergometer and the Stages power meter for measurement of power output in cycling, Journal of Science and Cycling, vol. 5, pp. 16-22, 2016.
C. Lee, H. C. Shin, S. Kang, and J.-B. Lee, “Measurement of desirable minimum one-way bike lane width,” KSCE J. Civ. Eng., vol. 20, pp. 881-889, 2016.10.1007/s12205-015-0467-0