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2020 | OriginalPaper | Chapter

Proposal and Implementation of Probe for Sigfox Technology

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Abstract

The paper deals with designing and implementation of a probe that measures the quality of Sigfox radio network coverage. This probe consists of the mobile application for Android operation system, Sigfox RF module, and Bluetooth module. Finding the coverage quality is solved by wireless communication between mobile device and Sigfox module, which sends Sigfox message. The developed solution mainly offers a possibility to display base stations on a map and show a list of all measurements. The probe represents a tool, which is intended primarily to find areas with weak or non-existent Sigfox network coverage and as the authors know, the presented solution is unique so far.

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Literature
1.
go back to reference Krivtsova, I., et al.: Implementing a broadcast storm attack on a mission-critical wireless sensor network. In: Mamatas, L., Matta, I., Papadimitriou, P., Koucheryavy Y. (eds) Wired/Wireless Internet Communications. WWIC 2016. LNCS, vol 9674. Springer, Cham (2016) Krivtsova, I., et al.: Implementing a broadcast storm attack on a mission-critical wireless sensor network. In: Mamatas, L., Matta, I., Papadimitriou, P., Koucheryavy Y. (eds) Wired/Wireless Internet Communications. WWIC 2016. LNCS, vol 9674. Springer, Cham (2016)
2.
go back to reference Manyika, J., Chui, M., Bisson, P., Woetzel, J., Dobbs, R., Bughin, J., Aharon, D.: The Internet of things: mapping the value beyond the hype. McKinsey Global Institute (2015) Manyika, J., Chui, M., Bisson, P., Woetzel, J., Dobbs, R., Bughin, J., Aharon, D.: The Internet of things: mapping the value beyond the hype. McKinsey Global Institute (2015)
3.
go back to reference Bradley, J., Barbier, J., Handler, D.: Embracing the Internet of everything to capture your share of \$14.4 trillion. Cisco (2013) Bradley, J., Barbier, J., Handler, D.: Embracing the Internet of everything to capture your share of \$14.4 trillion. Cisco (2013)
4.
go back to reference Raza, U., Kulkarni, P., Sooriyabandara, M.: Low power wide area networks: an overview. IEEE Commun. Surveys Tuts. 19(2), 855–873 (2017)CrossRef Raza, U., Kulkarni, P., Sooriyabandara, M.: Low power wide area networks: an overview. IEEE Commun. Surveys Tuts. 19(2), 855–873 (2017)CrossRef
5.
go back to reference Mekki, K., Bajic, E., Chaxel, F., Meyer, F.: A comparative study of LPWAN technologies for large-scale IoT deployment. ICT Express (2018) Mekki, K., Bajic, E., Chaxel, F., Meyer, F.: A comparative study of LPWAN technologies for large-scale IoT deployment. ICT Express (2018)
6.
go back to reference Lauridsen, M., Nguyen, H., Vejlgaard, B., Kovacs, I., Mogensen, P., Sørensen, M.: Coverage comparison of GPRS, NB-IoT, LoRa, and SigFox in a 7800 km2 area. In: VTC Spring. Accepted, June 2017 Lauridsen, M., Nguyen, H., Vejlgaard, B., Kovacs, I., Mogensen, P., Sørensen, M.: Coverage comparison of GPRS, NB-IoT, LoRa, and SigFox in a 7800 km2 area. In: VTC Spring. Accepted, June 2017
9.
go back to reference ETSI EN 300 220-1 V2.4.1. Electromagnetic compatibility and Radio spectrum Matters; Short Range Devices; Radio equipment to be used in the 25 MHz to 1 000 MHz frequency range with power levels ranging up to 500 mW; Part 1, 1 (2012) ETSI EN 300 220-1 V2.4.1. Electromagnetic compatibility and Radio spectrum Matters; Short Range Devices; Radio equipment to be used in the 25 MHz to 1 000 MHz frequency range with power levels ranging up to 500 mW; Part 1, 1 (2012)
10.
go back to reference Vejlgaard, B., Lauridsen, M., Nguyen, H., Kovacs, I., Mogensen, P., Sorensen, M.: Coverage and capacity analysis of Sigfox LoRa GPRS and NB-IoT. In: IEEE 85th Vehicular Technology Conference, June 2017 Vejlgaard, B., Lauridsen, M., Nguyen, H., Kovacs, I., Mogensen, P., Sorensen, M.: Coverage and capacity analysis of Sigfox LoRa GPRS and NB-IoT. In: IEEE 85th Vehicular Technology Conference, June 2017
12.
go back to reference Cotta, A., Devidas, N.T., Ekoskar, V.K.N.: Wireless communication using HC-05 bluetooth module interfaced with arduino. Int. J. Sci., Eng. and Tech. Res. (IJSETR) 5(4), 1–4 (2016) Cotta, A., Devidas, N.T., Ekoskar, V.K.N.: Wireless communication using HC-05 bluetooth module interfaced with arduino. Int. J. Sci., Eng. and Tech. Res. (IJSETR) 5(4), 1–4 (2016)
Metadata
Title
Proposal and Implementation of Probe for Sigfox Technology
Authors
Jakub Jalowiczor
Miroslav Voznak
Copyright Year
2020
DOI
https://doi.org/10.1007/978-3-030-14907-9_41