% Pro sazbu seznamu literatury použijte jednu z následujících možností %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% %1) Seznam citací definovaný přímo pomocí prostředí literatura / thebibliography \nobreak \begin{thebibliography}{99} \bibitem{ltebook} SAUTER, Martin. \emph{From GSM to LTE-advanced pro and 5G: an introduction to mobile networks and mobile broadband.} Third edition. Hoboken, NJ, USA: Wiley, 2017. ISBN 978-1-119-34686-9. \bibitem{3gppurllc} 3GPP. \emph{Ultra Reliable and Low Latency Communications [online]} 2022, 2023-1-2 [cited~on~2023-12-27]. Avaible at: {\small \url{https://www.3gpp.org/technologies/urlcc-2022} } \bibitem{nokia49g} NOKIA. \emph{The path to 5G: New services with 4.5G, 4.5G Pro and 4.9G} 2016 Avaible at: {\small \url{https://web.archive.org/web/20170113135222/http://resources.alcatel-lucent.com/asset/200173} } \bibitem{5gnruk} 5G.co.uk. \emph{What is 5G New Radio (5G NR) [online]} 2022 [cited~on~2023-12-27] Avaible at: {\small \url{https://5g.co.uk/guides/what-is-5g-new-radio/} } \bibitem{3gppmulticast} 3GPP. \emph{What is 5G New Radio (5G NR) [online]} 2023 [cited~on~2023-12-27] Avaible at: {\small \url{https://www.3gpp.org/technologies/broadcast-multicast1} } \bibitem{rohdenbiot} ROHDE-SCHWARZ. \emph{Narrowband Internet of Things Whitepaper [pdf]} ,2016 Avaible at: {\small \url{https://cdn.rohde-schwarz.com/pws/dl_downloads/dl_application/application_notes/1ma266/1MA266_0e_NB_IoT.pdf} } \bibitem{erf} Everything RF. \emph{What is LTE Cat-M2? [online]} 2023-3-12 [cited~on~2023-12-27] Avaible at: {\small \url{https://www.everythingrf.com/community/what-is-lte-cat-m2} } \bibitem{o2catm} O2. \emph{O2 spustilo síť Cat-M. Pokrytí dosahuje 98,5 \% území České republiky [online]} 2023-12-18 Avaible at: {\small \url{https://www.o2.cz/spolecnost/tiskove-centrum/o2-spustilo-sit-cat-m-pokryti-dosahuje-98-5-uzemi-ceske-republiky} } \bibitem{vodafonemap} Vodafone. \emph{Mapa pokrytí [online]} [cited~on~2023-12-27] Avaible at: {\small \url{https://www.vodafone.cz/mapa-pokryti/} } \bibitem{narowbandcoverage} NARROWBAND. \emph{NB-IoT coverage [online]} [cited~on~2023-12-27] Avaible at: {\small \url{https://www.narrowband.com/nb-iot-coverage} } \bibitem{5gamericasurllc} 5G Americas. \emph{NEW SERVICES \& APPLICATIONS WITH 5G ULTRA-RELIABLE LOW LATENCY COMMUNICATIONS [pdf]} 2018, 2019-9 Avaible at: {\small \url{https://5gamericas.org/wp-content/uploads/2019/07/5G_Americas_URLLLC_White_Paper_Final__updateJW.pdf} } \bibitem{5gamericav2v} 5G Americas. \emph{The Road Ahead For 5G Cellular Vehicle-to-Everything [online]} 2021-9-15 Avaible at: {\small \url{https://www.5gamericas.org/the-road-ahead-for-5g-cellular-vehicle-to-everything/} } \bibitem{nrf91desc} Nordic Semiconductor. \emph{nRF9160 cellular IoT System-in-Package Product-Brief [pdf]} 2019 Avaible at: {\small \url{https://www.nordicsemi.com/-/media/Software-and-other-downloads/Product-Briefs/nRF9160-SiP-product-brief.pdf} } \bibitem{rm520ndatasheet} Quectel. \emph{RM520N-GL Hardware Design [pdf]} 2022-07-15 Avaible at: {\small \url{https://forums.quectel.com/uploads/short-url/1zkjPRnxF5BZ2woox386baCZx4g.pdf} } \bibitem{nrf9160cert} Nordic semiconductor. \emph{nRF91 Series certifications [online]} [cited~on~2023-12-27] Avaible at: {\small \url{https://www.nordicsemi.com/Products/Wireless/Low-power-cellular-IoT/nRF91-Series-certifications/nRF9160-Global-and-regulatory} } \bibitem{armtrustzone} ARM Ltd. \emph{TECHNOLOGIES - TrustZone for Cortex-M [online]} [cited~on~2023-12-27] Avaible at: {\small \url{https://www.arm.com/technologies/trustzone-for-cortex-m} } \bibitem{nrf91dkdesc} Nordic Semiconductor. \emph{nRF9160 DK Development kit [online]} [cited~on~2023-12-27] Avaible at: {\small \url{https://www.nordicsemi.com/Products/Development-hardware/nrf9160-dk} } \bibitem{thingydesc}. Nordic Semiconductor. \emph{Nordic Thingy:91 Cellular IoT prototyping platform [online]} [cited~on~2023-12-27] Avaible at: { \small \url{https://www.nordicsemi.com/Products/Development-hardware/Nordic-Thingy-91} } \bibitem{nimbelinkdesc}. Airgain. \emph{NimbeLink Nano Global LTE-M [online]} [cited~on~2023-12-27] Avaible at: { \small \url{https://www.airgain.com/products/4g-lte-m-skywire-nano/} } \bibitem{ln60desc}. Fanstel. \emph{LN60E, LTE-M, NB-IoT module, M.2 connector [online]} [cited~on~2023-12-27] Avaible at: { \small \url{https://www.fanstel.com/buy/bt840f-v1-nrf52840-bluetooth-5-thread-zigbee-module-by45z-8ypje} } \bibitem{pebbledesc} IoTeX. \emph{Pebble Tracker A secure, battery-operated, blockchain-ready, cellular-IoT prototyping platform based on the nRF91 [online]} 2022 [cited~on~2023-12-27] Avaible at: { \small \url{https://www.crowdsupply.com/iotex/pebble-tracker} } \bibitem{icarusdesc}. Actinius. \emph{Icarus SoM [online]} [cited~on~2023-12-27] Avaible at: { \small \url{https://www.actinius.com/icarus-som} } \bibitem{icarusbeedesc}. Actinius. \emph{Icarus Bee (nRF9160) [online]} [cited~on~2023-12-27] Avaible at: { \small \url{https://www.actinius.com/icarus-bee} } \bibitem{icarusiotdesc}. Actinius. \emph{Icarus IoT Board v2 [online]} [cited~on~2023-12-27] Avaible at: { \small \url{https://www.actinius.com/icarus} } \bibitem{featherdesc}. CircuitDojo. \emph{nRF9160 Feather (v5) [online]} [cited~on~2023-12-27] Avaible at: { \small \url{https://www.circuitdojo.com/products/nrf9160-feather} } \bibitem{sparkfundesc}. SparkFun. \emph{SparkFun Thing Plus - nRF9160 [online]} [cited~on~2023-12-27] Avaible at: { \small \url{https://www.sparkfun.com/products/17354} } \bibitem{connexiodesc}. Conexio. \emph{Conexio Stratus - A tiny, powerful, versatile cellular-IoT prototyping platform with out-of-the-box connectivity [online]} 2022, [cited~on~2023-12-27] Avaible at: { \small \url{https://www.crowdsupply.com/conexio/stratus} } \bibitem{waveshare1} Waveshare. \emph{Quectel RM520N-GL IoT 5G Global Band Module, 5G Sub-6G Module, M.2 Form Factor With 3GPP 5G Release 16 Specification. [online]} [cited~on~2023-12-27] Avaible at: [https://www.waveshare.com/rm520n-gl.htm] \bibitem{waveshare2} Waveshare. \emph{Wiki - RM520N-GL [online]} [cited~on~2023-12-27] Avaible at: [https://www.waveshare.com/wiki/RM520N-GL] \bibitem{rmdongle} Waveshare. \emph{5G DONGLE Module, quad antennas, USB3.1 port, Aluminum Alloy Heatsink, M.2 Key B Interface, Options For 5G Module [online]} [cited~on~2023-12-27] Avaible at: [https://www.waveshare.com/usb-to-m.2-b-key.htm] \bibitem{rmpi} Waveshare. \emph{RM520N-GL 5G HAT for Raspberry Pi with Case, Quad Antennas LTE-A, Global Band, GNSS Positioning, Support 3GPP 16, 4G/3G [online]} [cited~on~2023-12-27] Avaible at: [https://www.waveshare.com/rm520n-gl-5g-hat-with-case.htm] \bibitem{rmeth} Waveshare. \emph{5G M.2 to Gigabit Ethernet Converter, 5G M.2 to USB3.1, Aluminum Alloy Case, Wall-Mount Support, Quad Antennas, Options For 5G Module [online]} [cited~on~2023-12-27] Avaible at: [https://www.waveshare.com/5g-m.2-to-gigabit-eth.htm] \bibitem{rmjet} Waveshare. \emph{5G/4G/3G module designed for Jetson Nano, multi mode multi band, Options for 5G Module [online]} [cited~on~2023-12-27] Avaible at: [https://www.waveshare.com/sim8202g-m2-5g-for-jetson-nano.htm] \bibitem{nrf91datasheet} Nordic Semiconductor. \emph{nRF9160 Product Specification [pdf]} [2021-10] Avaible at: {\small \url{https://cz.mouser.com/datasheet/2/297/nRF9160_PS_v2_1-3074783.pdf} } \bibitem{nrf91dkbrief} Nordic Semiconductor. \emph{nRF9160 Product brief [pdf]} [2019] Avaible at: {\small \url{https://www.nordicsemi.com/-/media/Software-and-other-downloads/Product-Briefs/nRF9160-DK-product-brief.pdf} } \bibitem{unilabnews} Brno university of technology. \emph{In the laboratory of 5G networks at BUT it will be possible to easily test devices for smart homes, for example [online]} 2021-05-13 [cited~on~2023-12-27] Avaible at: {\small \url{https://www.vut.cz/en/but/news-f19528/vodafoneunilab-in-the-laboratory-of-5g-networks-at-but-it-will-be-possible-to-easily-test-devices-for-smart-homes-for-example-d212534} } \bibitem{haldatasheet} Texas Instruments. \emph{DRV5033 Digital-Omnipolar-Switch Hall Effect Sensor [pdf]} 2016-9 Avaible at: {\small \url{https://www.ti.com/lit/ds/symlink/drv5033.pdf}} \bibitem{tempdatasheet} Texas Instruments. \emph{LM35 Precision Centigrade Temperature Sensors [pdf]} 2017-12 Avaible at: {\small \url{https://www.ti.com/lit/ds/symlink/lm35.pdf}} \bibitem{pirdatasheet} Hadson Technology. \emph{HC-SR501 Passive Infrared (PIR) Motion Sensor [pdf]} Avaible at: {\small \url{https://www.handsontec.com/dataspecs/SR501\%20Motion\%20Sensor.pdf}} \bibitem{gasdatasheet} Pololu. \emph{MQ-2 Semiconductor Sensor for Combustible Gas} Avaible at: {\small \url{https://www.pololu.com/file/0J309/MQ2.pdf} } \bibitem{statista} Statista. \emph{Number of Internet of Things (IoT) connected devices worldwide from 2019 to 2023, with forecasts from 2022 to 2030 [online]} 2023 [cited~on~2023-12-27]. {\small \url{https://www.statista.com/statistics/1183457/iot-connected-devices-worldwide/}} \bibitem{gsmalpwan} GSMA. \emph{Mobile IoT in the 5G future [online]} 2018-4 Avaible at: {\small \url{https://www.ericsson.com/4ac64d/assets/local/reports-papers/5g/doc/gsma-5g-mobile-iot.pdf} } \bibitem{nordiccompare} Nordic semiconductor. \emph{LTE-M vs NB-IoT Field Test: How Distance Affects Power Consumption [online]} 2022-9-8 [cited~on~2023-12-27]. Avaible at: { \small \url{https://devzone.nordicsemi.com/nordic/nordic-blog/b/blog/posts/ltem-vs-nbiot-field-test-how-distance-affects-power-consumption#mcetoc_1gbn0onnva} } \bibitem{nrfsdk} Nordic semiconductor. \emph{nRF Connect SDK [online]} 2023 [cited~on~2023-12-27]. Avaible at: { \small \url{https://www.nordicsemi.com/Products/Development-tools/nRF-Connect-for-desktop } } \bibitem{mqtt} MQTT.org \emph{MQTT: The Standard for IoT Messaging [online]} 2022 [cited~on~2023-12-27]. Avaible at: {\small \url{mqtt.org} } \bibitem{nrfmqtt} Nordic Semiconductor. \emph{nRF9160: Simple MQTT [online]} 2022 [cited~on~2023-12-27]. Avaible at: {\small \url{https://developer.nordicsemi.com/nRF_Connect_SDK/doc/2.2.0/nrf/samples/nrf9160/mqtt_simple/README.html} } \bibitem{zephyrpp} Zephyr Project. \emph{Zephyr Project Overview [pdf]} 2023 Avaible at: {\small \url{https://www.zephyrproject.org/wp-content/uploads/sites/38/2023/09/Zephyr-Overview.pdf} } %\bibitem{sr72/2017} % VYSOKÉ UČENÍ TECHNICKÉ V~BRNĚ. % \emph{Směrnice č.\,72/2017, Úprava, odevzdávání a~zveřejňování závěrečných prací.} % Online. Brno: VUT v~Brně, 2017. % Úplné znění ke dni 11.\,4.\,2022. % Dostupné z:\\ % {\small % \url{https://www.vut.cz/uredni-deska/vnitrni-predpisy-a-dokumenty/smernice-c-72-2017-uprava-odevzdavani-a-zverejnovani-zaverecnych-praci-d161410}.} % [cit.\ 2023-09-27]. % %\bibitem{CSN_ISO_690-2022} % ÚŘAD PRO TECHNICKOU NORMALIZACI, METROLOGII A~STÁTNÍ ZKUŠEBNICTVÍ. % ČSN ISO 690:2022 (01 0197), \emph{Informace a dokumentace -- Pravidla pro bibliografické odkazy a~citace informačních zdrojů.} % Čtvrté vydání. Praha, 2022. % %\bibitem{CSN_ISO_7144-1997} % ÚŘAD PRO TECHNICKOU NORMALIZACI, METROLOGII A~STÁTNÍ ZKUŠEBNICTVÍ. % ČSN ISO 7144 (010161), \emph{Dokumentace -- Formální úprava disertací a~podobných dokumentů.} %% 24 stran. % Praha, 1997. % %\bibitem{CSN_ISO_31-11} % ÚŘAD PRO TECHNICKOU NORMALIZACI, METROLOGII A~STÁTNÍ ZKUŠEBNICTVÍ. % ČSN ISO 31-11, \emph{Veličiny a~jednotky -- část 11: Matematické znaky a~značky používané ve fyzikálních vědách a~v~technice.} % Praha, 1999. % %\bibitem{Farkasova23:CSNISO6902022komentar} % FARKAŠOVÁ, B. et al. % \emph{Výklad normy ČSN ISO 690:2022 (01 0197) účinné od 1.\,12.\,2022}. % Online. První vydání. 2023. % Dostupné~z: % \url{https://www.citace.com/Vyklad-CSN-ISO-690-2022.pdf}. % [cit.\,2023-09-27]. % %\bibitem{pravidla} % \emph{Pravidla českého pravopisu}. % 1.\ vydání. Olomouc: FIN, 1998.\\ % \mbox{ISBN 80-86002-40-3}. % %\bibitem{Walter1999} % WALTER, G.\,G. a SHEN, X. % \emph{Wavelets and Other Orthogonal Systems}. % 2.\,vydání, Boca Raton: Chapman\,\&\,Hall/CRC, 2000. % ISBN 1-58488-227-1 % %\bibitem{Svacina1999IEEE} % SVAČINA, J. % Dispersion Characteristics of Multilayered Slotlines -- a Simple Approach. % \emph{IEEE Transactions on Microwave Theory and Techniques}. % 1999, vol.\,47, no.\,9, s.\,1826--1829. ISSN 0018-9480. % %\bibitem{RajmicSysel2002} % RAJMIC, P. a SYSEL, P. % Wavelet Spectrum Thresholding Rules. % In: \emph{Proceedings of the International Conference Research in Telecommunication Technology}. % Žilina: Žilina University, 2002. s.\,60--63. ISBN 80-7100-991-1. % \end{thebibliography} % % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% %2) Seznam citací pomocí BibTeXu % Při použití je nutné v TeXnicCenter ve výstupním profilu aktivovat spouštění BibTeXu po překladu. % Definice stylu seznamu %\bibliographystyle{unsrturl} %% Pro českou sazbu lze použít styl czechiso.bst ze stránek %% http://www.fit.vutbr.cz/~martinek/latex/czechiso.tar.gz %\bibliographystyle{czechiso} %\printbibliography