• DocumentCode
    2180053
  • Title

    Connection and resource allocation of IoT sensors to cellular technology-LTE

  • Author

    Thomas, Darshana ; Irvine, James

  • Author_Institution
    Department of Electronic and Electrical Engineering, Strathclyde University, Glasgow, G1 1XW
  • fYear
    2015
  • fDate
    June 29 2015-July 2 2015
  • Firstpage
    365
  • Lastpage
    368
  • Abstract
    The number of sensor nodes being used for the applications is increasing dramatically every year. In this paper we consider LTE for sensor networks. There is little published research on resource allocation of sensor networks in LTE. Theoretical calculation carried out for mobile users in LTE was used and recreated for sensor nodes transmitting. Existing literature has carried this out for mobile users on LTE network, transmitting 10 Kb, theoretically without mentioning the total resource blocks allocated for the network based on the bandwidth. In this paper we utilise LTE for sensor networks and investigate how many sensor nodes can transmit and how many bytes will be transmitted per Resource Block (RB). Theoretical calculation was carried out for sensor nodes to find out the data that can be transmitted per RB by sensor nodes transmitting 10 Kb. We find significantly different results when carrying out simulation for a critical sensor network, using realistic real world parameters for the LTE network. We clearly specify the bandwidth and resource blocks used for the simulation in this paper. We carry out simulation in OMNET to create sensor network scenario demonstrating results with 29 sensor nodes transmitting 1 Kb of data.
  • Keywords
    Bandwidth; Data models; IP networks; Long Term Evolution; Resource management; Sensors; Wireless sensor networks; LTE; Resource Allocation; Sensors;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Ph.D. Research in Microelectronics and Electronics (PRIME), 2015 11th Conference on
  • Conference_Location
    Glasgow, United Kingdom
  • Type

    conf

  • DOI
    10.1109/PRIME.2015.7251411
  • Filename
    7251411