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On the Energy-efficient Use of Discontinuous Reception and Release Assistance in NB-IoT

Abbas, Muhammad Tahir (author)
Karlstads universitet,Institutionen för matematik och datavetenskap (from 2013),Distributed Systems and Communications Research Group (DISCO)
Eklund, Johan, 1966- (author)
Karlstads universitet,Institutionen för matematik och datavetenskap (from 2013),Distributed Systems and Communications Research Group (DISCO)
Brunström, Anna, 1967- (author)
Karlstads universitet,Institutionen för matematik och datavetenskap (from 2013),Distributed Systems and Communications Research Group (DISCO)
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Alfredsson, Stefan, 1976- (author)
Karlstads universitet,Institutionen för matematik och datavetenskap (from 2013),Distributed Systems and Communications Research Group (DISCO)
Rajiullah, Mohammad, 1981- (author)
Karlstads universitet,Institutionen för matematik och datavetenskap (from 2013),Distributed Systems and Communications Research Group (DISCO)
Grinnemo, Karl-Johan, 1968- (author)
Karlstads universitet,Institutionen för matematik och datavetenskap (from 2013),Distributed Systems and Communications Research Group (DISCO)
Caso, Giuseppe (author)
Ericsson Research
Kousias, Konstantinos (author)
Simula Research Laboratory, Norway
Alay, Özgü (author)
Karlstads universitet,Institutionen för matematik och datavetenskap (from 2013),University of Oslo, Norway,Distributed Systems and Communications Research Group (DISCO)
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 (creator_code:org_t)
New York : IEEE Communications Society, 2022
2022
English.
  • Conference paper (peer-reviewed)
Abstract Subject headings
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  • Cellular Internet of Things (CIoT) is a Low-Power Wide-Area Network (LPWAN) technology. It aims for cheap, lowcomplexity IoT devices that enable large-scale deployments and wide-area coverage. Moreover, to make large-scale deployments of CIoT devices in remote and hard-to-access locations possible, a long device battery life is one of the main objectives of these devices. To this end, 3GPP has defined several energysaving mechanisms for CIoT technologies, not least for the Narrow-Band Internet of Things (NB-IoT) technology, one of the major CIoT technologies. Examples of mechanisms defined include CONNECTED-mode DRX (cDRX), Release Assistance Indicator (RAI), and Power Saving Mode (PSM). This paper considers the impact of the essential energy-saving mechanisms on minimizing the energy consumption of NB-IoT devices, especially the cDRX and RAI mechanisms. The paper uses a purpose-built NB-IoT simulator that has been tested in terms of its built-in energy-saving mechanisms and validated with realworld NB-IoT measurements. The simulated results show that it is possible to save 70%-90% in energy consumption by enabling the cDRX and RAI. In fact, the results suggest that a battery life of 10 years is only achievable provided the cDRX, RAI, and PSM energy-saving mechanisms are correctly configured and used

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Elektroteknik och elektronik -- Telekommunikation (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Electrical Engineering, Electronic Engineering, Information Engineering -- Telecommunications (hsv//eng)

Keyword

CIoT
NB-IoT
energy-efficiency
cDRX
RAI
PSM.
Computer Science
Datavetenskap

Publication and Content Type

ref (subject category)
kon (subject category)

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