Title :
A framework for power saving in IoT networks
Author_Institution :
Cisco Syst., Bangalore, India
Abstract :
An IoT / M2M system may support large number of battery operated devices in addition to some mains operated devices. It is important to conserve energy of these battery operated constrained devices. An IoT / M2M Gateway used in this system is an intermediate node between IoT / M2M devices and an IoT / M2M Service Platform. It enables distributed analytics and helps to reduce traffic load in the network. This gateway could be stationary or mobile. In an IoT / M2M system, it becomes important to conserve energy of this Gateway as well. This paper proposes a framework to reduce power consumption of M2M / IoT devices as well as Gateway nodes. We buffer data at IoT Application, IoT Gateways and Devices to keep devices and Gateway nodes in sleep mode as long as possible. We allow computation of the duration to buffer this data using factors such as QoS requirements, predicted pattern of future IoT / M2M messages and congestion indicators from different network nodes. This potentially also allows intelligent aggregation of IoT messages at the Gateway node. We also enhance signaling mechanisms and present software building blocks for this framework. Mesh as well as Cellular access technologies are considered here.
Keywords :
Internet of Things; cellular radio; internetworking; mobile computing; telecommunication power management; telecommunication traffic; wireless mesh networks; Internet-of-things; IoT networks; IoT service platform; M2M gateway; M2M messages; M2M service platform; QoS requirements; battery operated constrained devices; cellular access technologies; congestion indicators; distributed analytics; energy conservation; gateway nodes; intelligent IoT message aggregation; intermediate node; machine-to-machine communication; network nodes; power saving; software building blocks; traffic load reduction; Batteries; Delays; Logic gates; Protocols; Schedules; Security; Temperature sensors; IEEE802.15.4; Internet of Things (IoT); Machine to Machine (M2M) Communication; Power Saving;
Conference_Titel :
Advances in Computing, Communications and Informatics (ICACCI, 2014 International Conference on
Conference_Location :
New Delhi
Print_ISBN :
978-1-4799-3078-4
DOI :
10.1109/ICACCI.2014.6968211