Objective function based routing protocol to improve the quality of service in industrial internet of things
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Abstract
Wireless Sensor Networks (WSN) consists of small sensing devices
newlinecalled sensors used to monitor and gather information from real-time
newlineenvironments. As the sensors are not connected to the internet they cannot
newlineprovide information to the users or act on the environment. This scenario results
newlinein the emergence of a new technology called the Internet of Things (IoT). IoT is
newlinemade up of uniquely addressable low-power devices deployed in an environment
newlineto form a Low-power and Lossy Network (LLN). Reliable and energy efficient
newlinecommunication between the devices deployed in applications like industries,
newlineforest fire monitoring, health care, home automation is necessary for the
newlineefficiency of real-time IoT applications. It can be achieved by an efficient
newlinerouting protocol. The routing protocol strives to find the reliable path from the
newlinesource to the destination for data transmission with good Quality of Service
newline(QoS) and energy efficiency.
newlineThe Routing Protocol for Low-power and Lossy Networks (RPL) is
newlineone of the recommended routing protocols for LLN. RPL uses two objective
newlinefunctions, Objective Function Zero (OF 0) and Minimum Rank with Hysteresis
newlineObjective Function (MRHOF) to select the optimal path for communication.
newlineThe design of the objective functions OF 0 and MRHOF is based on the node
newlinemetric hop-count and the link metric Expected Transmission count (ETX).
newlineThe sensors deployed in the real-time applications must quickly sense, analyze,
newlineand react to the data within a time frame, so QoS and energy efficiency are
newlineimportant qualities required for data communication. The QoS depends on the
newlinemeasures of throughput, packet delivery ratio and latency. But the metrics
newlinehop-count and ETX are not sufficient to achieve QoS and energy efficient
newlinerouting.
newline