References

Azim, A., & Aycard, O. (2012). Detection, classification and tracking of moving objects in a 3D environment. 2012 IEEE Intelligent Vehicles Symposium, 802–807. https://doi.org/10.1109/IVS.2012.6232303

Botha, T. R. (2015). Digital Image Correlation: Applications in Vehicle Dynamics. University of Pretoria. https://repository.up.ac.za/handle/2263/45956

Chazette, P., Totems, J., Hespel, L., & Bailly, J.-S. (2016). Principle and Physics of the LiDAR Measurement. In Optical Remote Sensing of Land Surface (pp. 201–247). https://doi.org/10.1016/B978-1-78548-102-4.50005-3

Dotnetix (Pty) Ltd. (2019). SAFEYE – Pedestrian Detection System. Retrieved January 13, 2020, from https://0cf993d8-a98d-4144-8e1b-96074f19fbe4.filesusr.com/ugd/1af765_8e7cb2ef2fe7439fa918f9f93680bed0.pdf

Extronics Ltd. (2019). iTAG100 Intrinsically Safe Wi-Fi RFID Tag. Retrieved from https://www.extronics.com/product/itag100-zone-1-rfid-tag/

Li, J., Carr, J., Waynert, J., & Kovalchik, P. (2013). Environmental impact on the magnetic field distribution of a magnetic proximity detection system in an underground coal mine. Journal of Electromagnetic Waves and Applications, 27(18), 2416–2429. https://doi.org/10.1080/09205071.2013.852487

Li, J., Smith, A., Carr, J., & Whisner, B. (2019). Influence of Temperature on Generator Current and Magnetic Field of a Proximity Detection System. Mining, Metallurgy & Exploration, 36(3), 541–545. https://doi.org/10.1007/s42461-019-0054-x

MacHardy, Z., Khan, A., Obana, K., & Iwashina, S. (2018). V2X Access Technologies: Regulation, Research, and Remaining Challenges. IEEE Communications Surveys & Tutorials, 20(3), 1858–1877. https://doi.org/10.1109/COMST.2018.2808444

Principles of Modern Radar. (1987). In J. L. Eaves & E. K. Reedy (Eds.), Principles of Modern Radar. https://doi.org/10.1007/978-1-4613-1971-9

Q-Track. (2020). NFER RTLS Indoor Location Evaluation Kit Only $3495. Retrieved January 13, 2020, from https://q-track.com/nfer-rtls-indoor-location-evaluation-kit-only-3495/

Racelogic. (2014). VBOX 3i v3 100Hz GPS Data Logger. Retrieved December 12, 2016, from http://www.racelogic.co.uk/_downloads/vbox/Datasheets/Data_Loggers/RLVB3i_Data.pdf

Racelogic. (2018). VB3i IMU Kalman Filter. Retrieved February 4, 2020, from https://racelogic.support/01VBOX_Automotive/04Modules_and_accessories/Inertial_Measurement_Units/IMU%2F%2FYAW_Knowledge_Base/VB3i_IMU_Kalman_Filter

Richards, M. A., Scheer, J. A., & Holm, W. A. (2010). Principles of Modern Radar: Basic principles. In M. A. Richards, J. A. Scheer, & W. A. Holm (Eds.), Principles of Modern Radar: Basic Principles. https://doi.org/10.1049/SBRA021E

Sarkar, M., & Theuwissen, A. (2013). A Biologically Inspired CMOS Image Sensor. In Studies in Computational Intelligence. https://doi.org/10.1007/978-3-642-34901-0

Schantz, H. (2012). Theory and practice of near-field electromagnetic ranging. In Institute of Navigation International Technical Meeting 2012, ITM 2012 (Vol. 2). https://www.ion.org/publications/abstract.cfm?articleID=10005

Schantz, H. G. (2007). A real-time location system using near-field electromagnetic ranging. 2007 IEEE Antennas and Propagation Society International Symposium, 3792–3795. https://doi.org/10.1109/APS.2007.4396365

Schantz, Hans Gregory, Weil, C., & Unden, A. H. (2011). Characterization of error in a Near-Field Electromagnetic Ranging (NFER) Real-Time Location System (RTLS). 2011 IEEE Radio and Wireless Symposium, 379–382. https://doi.org/10.1109/RWS.2011.5725491

Smartmicro. (2019). UMRR Automotive Type 132 Data Sheet. Retrieved January 7, 2020, from https://www.smartmicro.com/fileadmin/media/Downloads/Automotive_Radar/Sensor_Data_Sheets_76-81GHz/UMRR-11_Type_132_Automotive_Data_Sheet.pdf

Taylor, T., Geva, S., & Boles, W. (2004). Monocular Vision as a Range Sensor. In M. Mohammadian (Ed.), Proceedings of the International Conference on Computational Intelligence for Modelling, Control & Automation (CIMCA 2004) (pp. 566–575). Retrieved from https://eprints.qut.edu.au/395/

Thorbjornsen, B., White, N. M., Brown, A. D., & Reeve, J. S. (2010). Radio frequency (RF) time-of-flight ranging for wireless sensor networks. Measurement Science and Technology, 21(3), 035202. https://doi.org/10.1088/0957-0233/21/3/035202

u-blox. (2019). u-blox 8 GNSS module Data Sheet. Retrieved January 8, 2020, from https://www.u-blox.com/sites/default/files/EVA-8M_DataSheet_%28UBX-16009928%29.pdf

Velodyne LiDAR. (2019a). Alpha Prime: Powering Safe Autonomy. Retrieved January 13, 2020, from https://velodynelidar.com/downloads/

Velodyne LiDAR. (2019b). HDL-32E high resolution real-time 3D lidar sensor. Retrieved January 13, 2019, from http://velodynelidar.com/docs/datasheet/97-0038_Rev K_ HDL-32E_Datasheet_Web.pdf

Velodyne LiDAR. (2019c). The limitations of current ADAS testing scenarios white paper. Retrieved January 13, 2020, from https://velodynelidar.com/downloads/

Wu, X., Sahoo, D., & Hoi, S. C. H. (2020). Recent advances in deep learning for object detection. Neurocomputing, 396, 39–64. https://doi.org/10.1016/j.neucom.2020.01.085

Zogg, J. M. (2009). GPS: Essentials of Satellite Navigation. Retrieved from https://books.google.com.au/books?id=F892KQEACAAJ