A Survey on an Energy-Efficient and Energy-Balanced Routing Protocol for Wireless Sensor Networks
Обзор энергоэффективного и энергетически сбалансированного протокола маршрутизации для беспроводных сенсорных сетей
2017-05-10
SCID: 54.1/7naytw4e
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energy-balanced routingenergy-efficient routingnetwork lifetimerouting protocol taxonomywireless sensor networks
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Abstract (AI)
Wireless sensor networks (WSNs) form an important part of industrial application. There has been growing interest in the potential use of WSNs in applications such as environment monitoring, disaster management, health care monitoring, intelligence surveillance and defence reconnaissance. In these applications, the sensor nodes (SNs) are envisaged to be deployed in sizeable numbers in an outlying area, and it is quite difficult to replace these SNs after complete deployment in many scenarios. Therefore, as SNs are predominantly battery powered devices, the energy consumption of the nodes must be properly managed in order to prolong the network lifetime and functionality to a rational time. Different energy-efficient and energy-balanced routing protocols have been proposed in literature over the years. The energy-efficient routing protocols strive to increase the network lifetime by minimizing the energy consumption in each SN. On the other hand, the energy-balanced routing protocols protract the network lifetime by uniformly balancing the energy consumption among the nodes in the network. There have been various survey papers put forward by researchers to review the performance and classify the different energy-efficient routing protocols for WSNs. However, there seems to be no clear survey emphasizing the importance, concepts, and principles of load-balanced energy routing protocols for WSNs. In this paper, we provide a clear picture of both the energy-efficient and energy-balanced routing protocols for WSNs. More importantly, this paper presents an extensive survey of the different state-of-the-art energy-efficient and energy-balanced routing protocols. A taxonomy is introduced in this paper to classify the surveyed energy-efficient and energy-balanced routing protocols based on their proposed mode of communication towards the base station (BS). In addition, we classified these routing protocols based on the solution types or algorithms, and the input decision variables defined in the routing algorithm. The strengths and weaknesses of the choice of the decision variables used in the design of these energy-efficient and energy-balanced routing protocols are emphasised. Finally, we suggest possible research directions in order to optimize the energy consumption in sensor networks.
Key Findings
1
Energy-efficient protocols primarily prolong network lifetime by minimizing individual sensor-node energy consumption, whereas energy-balanced protocols distribute consumption uniformly across nodes.
2
It presents an extensive review of state-of-the-art protocols and introduces taxonomies based on communication mode toward the base station, solution type, and input decision criteria.
3
The paper surveys energy-efficient and energy-balanced routing protocols designed to extend wireless sensor network lifetime under battery and replacement constraints.
4
The survey addresses a stated gap by emphasizing the concepts and principles of load-balanced energy routing protocols for wireless sensor networks.
Research Object
wireless sensor networks (WSNs) with battery-powered sensor nodes
Research Subject
energy-efficient and energy-balanced routing protocols, including their principles, performance, and taxonomy based on communication modes and solution types
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2017-05-10
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