Industry 4.0 Vision for the Supply of Energy and Materials. Группа авторов

Чтение книги онлайн.

Читать онлайн книгу Industry 4.0 Vision for the Supply of Energy and Materials - Группа авторов страница 26

Industry 4.0 Vision for the Supply of Energy and Materials - Группа авторов

Скачать книгу

G., Skubic, B., Mildh, G., Mecklin, T., Sandberg, J., Nyqvist, J., Neander, J., Martinez, C., Zhang, B., and Wan, J. (Nov 2015). Industrial Remote Operation: 5G Rises to the Challenge. Ericsson Technology Review. https://www.ericsson.com/en/reports-and-papers/ericsson-technology-review/articles/industrial-remote-operation-5g-rises-to-the-challenge.

      40 40 Sahlli, E., Ismail, M., Nordin, R., and Abdulah, N. (Jun 2017). Beamforming techniques for massive MIMO systems in 5G: Overview, classification, and trends for future research. Front. Inf. Technol. Electron. Eng. 18: 753–772.

      41 41 Anandhi, S., Anitha, R., and Sureshkumar, V. (2019). IoT enabled RFID Authentication and secure object tracking system for smart logistics. Wirel. Pers. Commun. 104 (2): 543–560.

      42 42 Growindhager, B., Stocker, M., Rath, M., Boano, C.A., and Romer, K. (2019). SnapLoc: an Ultra-Fast UWB-Based Indoor Localization System for an Unlimited Number of Tags. In: 2019 18th ACM/IEEE International Conference on Information Processing in Sensor Networks (IPSN), 61–72.

      43 43 Lee, C.K.M., Ip, C.M., Park, T., and Chung, S.Y. (2019). A Bluetooth Location- Based Indoor Positioning System for Asset Tracking in Warehouse. In: 2019 IEEE International Conference on Industrial Engineering and Engineering Management (IEEM), 1408–1412.

      44 44 Thales. Asset Tracking. https://www.thalesgroup.com/en/markets/digital-identity-and-security/iot/industries/asset-tracking.

      45 45 Frotzscher, A., Wetzker, U., Bauer, M., Rentschler, M., Beyer, M., Elspass, S., and Klessig, H. (2014). Requirements and Current Solutions of Wireless Communication in Industrial Automation. In: 2014 IEEE International Conference on Communications Workshops (ICC), 67–72.

      46 46 PROFIBUS & PROFINET International (PI). (Apr 2016). PROFISafe. https://www.profibus-profinet.cz/images/Dokumenty/PROFINET/2812_PROFIsafe_SystemDescription_ENG__2016_web.pdf.

      47 47 ODVA. CIP Safety™—common Industrial Protocol. ODVA, Inc. (Open DeviceNet Vendors Association). https://www.odvaorg/technology-standards/distinct-cip-services/cip-safety/.

      48 48 Davis, J. (Dec 2008). Top Five Selection Criteria for Industrial Wireless Technologies. Cypress Semiconductor Corp. https://www.eetimes.com/top-five-selection-criteria-for-industrial-wireless-technologies/#.

      49 49 Seferagic, A., Famaey, J., Eli, D.P., and Hoebeke, J. (Jan 2020). Survey on wireless technology trade-offs for the industrial Internet of things. Sensors 20 (2): 488.

      50 50 Zhu, J., Zou, Y., and Zheng, B. (2017). Physical-layer security and reliability challenges for industrial wireless sensor networks. IEEE Access 5: 5313–5320.

      51 51 Rao, S.K. and Prasad, R. (May 2018 ). Impact of 5G technologies on industry 4.0. Wirel. Pers. Commun. 100 (1): 145–159.

      52 52 Park, P., Fischione, C., Bonivento, A., Johansson, K.H., and Sangiovanni-Vincent, A. (2011). Breath: An adaptive protocol for industrial control applications using wireless sensor networks. IEEE Trans. Mob. Comput. 10 (6): 821–838.

      53 53 Porter, M.E. and Heppelmann, J.E. (Nov 2014). How smart, connected products are transforming competition. Harvard Business Review. https://hbr.org/2014/11/how-smart-connected-products-are-transforming-competition.

      54 54 Huang, V.K.L., Pang, Z., Chen, C.A., and Tsang, K.F. (2018). New trends in the practical deployment of industrial wireless: from noncritical to critical use cases. IEEE Ind. Electron. Mag. 12 (2): 50–58.

      55 55 Liu, Y., Kashef, M., Lee, K.B., Benmohamed, L., and Candell, R. (2019). Wireless network design for emerging IIoT applications: Reference framework and use cases. Proc. IEEE 107 (6): 1166–1192.

      56 56 Al-Fuqaha, A., Guizani, M., Mohammadi, M., Aledhari, M., and Ayyash, M. (2015). Internet of things: A survey on enabling technologies, protocols, and applications. IEEE Commun. Surv. Tutor. 17 (4): 2347–2376.

      57 57 Palattella, M.R., Dohler, M., Grieco, A., Rizzo, G., Torsner, J., Engel, T., and Ladid, L. (2016). Internet of things in the 5G Era: Enablers, architecture, and business models. IEEE J. Sel. Areas Commun. 34 (3): 510–527.

      58 58 IEC. (Dec 2015). Industrial Networks-Wireless Communication Network and Communication Profiles-WIA-PA. Standard IEC 62601, International Electrotechnical Commission (IEC). https://webstore.iec.ch/publication/23902.

      59 59 IEEE Standard for Low-Rate Wireless Networks. (2016). IEEE Std 802.15.4-2015 (Revision of IEEE Std 802.15.4-2011), 1–709.

      60 60 Palattella, M.R., Accettura, N., Vilajosana, X., Watteyne, T., Grieco, L.A., Boggia, G., and Dohler, M. (2013). Standardized protocol stack for the Internet of (important) things. IEEE Commun. Surv. Tutor. 15 (3): 1389–1406.

      61 61 Shi, K., Zhang, L., Zhiying, Q., Tong, K., Chen, H., and Berder, O. (Jan 2019). Transmission scheduling of periodic real-time traffic in IEEE 802.15.4e TSCH-based industrial mesh networks. Wireless Communications and Mobile Computing.

      62 62 Pister, K. and Doherty, L. (2008). TSMP: Time Synchronized Mesh Protocol. Proceeding of the IASTED International Symposium- Distributed Sensor Networks, 391, 61. https://people.eecs.berkeley.edu/~pister/publications/2008/TSMP%20DSN08.pdf.

      63 63

Скачать книгу