• 제목/요약/키워드: low power routing

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Energy Efficient Cluster Head Selection and Routing Algorithm using Hybrid Firefly Glow-Worm Swarm Optimization in WSN

  • Bharathiraja S;Selvamuthukumaran S;Balaji V
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제17권8호
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    • pp.2140-2156
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    • 2023
  • The Wireless Sensor Network (WSN), is constructed out of teeny-tiny sensor nodes that are very low-cost, have a low impact on the environment in terms of the amount of power they consume, and are able to successfully transmit data to the base station. The primary challenges that are presented by WSN are those that are posed by the distance between nodes, the amount of energy that is consumed, and the delay in time. The sensor node's source of power supply is a battery, and this particular battery is not capable of being recharged. In this scenario, the amount of energy that is consumed rises in direct proportion to the distance that separates the nodes. Here, we present a Hybrid Firefly Glow-Worm Swarm Optimization (HF-GSO) guided routing strategy for preserving WSNs' low power footprint. An efficient fitness function based on firefly optimization is used to select the Cluster Head (CH) in this procedure. It aids in minimising power consumption and the occurrence of dead sensor nodes. After a cluster head (CH) has been chosen, the Glow-Worm Swarm Optimization (GSO) algorithm is used to figure out the best path for sending data to the sink node. Power consumption, throughput, packet delivery ratio, and network lifetime are just some of the metrics measured and compared between the proposed method and methods that are conceptually similar to those already in use. Simulation results showed that the proposed method significantly reduced energy consumption compared to the state-of-the-art methods, while simultaneously increasing the number of functioning sensor nodes by 2.4%. Proposed method produces superior outcomes compared to alternative optimization-based methods.

WSN 환경에서 PEGASIS 기반 에너지 효율적 라우팅 프로토콜 (Energy Efficient Routing Protocol Based on PEGASIS in WSN Environment)

  • 백병철;권태욱
    • 한국전자통신학회논문지
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    • 제18권4호
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    • pp.579-586
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    • 2023
  • 무선 센서 네트워크(Wireless Sensor Network : WSN)는 저가의 소형 센서를 활용해서 무선으로 사용되기 때문에 제한된 배터리 전력을 가지고 있다. 배터리를 교체할 수 없으므로 센서 노드의 수명은 배터리의 수명과 직결되므로 전력을 효율적으로 사용하여 네트워크의 수명을 극대화해야 한다. 본 연구에서는 대표적인 에너지 효율적 라우팅 프로토콜인 PEGASIS(: Power-Efficient Gathering in Sensor Information System)를 기반으로 싱크 노드로부터의 거리에 따라 계층화하여 하나의 체인이 아닌 다중 체인을 구성하는 프로토콜을 제안한다. 제안하는 프로토콜은 노드 간 전송 거리를 줄여서 불필요한 에너지 소모를 막아 네트워크 수명을 높일 수 있음을 확인하였다.

센서 네트워크를 위한 계층적 라우팅 프로토콜의 성능 분석 (Performance Analysis of Hierarchical Routing Protocols for Sensor Network)

  • 서병석;윤상현;김종현
    • 한국시뮬레이션학회논문지
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    • 제21권4호
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    • pp.47-56
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    • 2012
  • 본 연구에서는 센서 네트워크용 병렬 시뮬레이터인 PASENS(Parallel SEnsor Network Simulator)를 이용하여 센서 네트워크에 이용되는 라우팅 알고리즘 중에서 계층적 라우팅 프로토콜의 대표적인 방식인 LEACH(Low-Energy Adaptive Clustering Hierarchy)와 그의 변형인 TL-LEACH(Two Level Low-Energy Adaptive Clustering Hierarchy), M-LEACH(Multihop Low-Energy Adaptive Clustering Hierarchy), 그리고 LEACH-C(LEACH-Centralized)의 전력 소모량과 데이터의 수신율을 비교하고 분석하였다. 시뮬레이션을 이용한 분석 결과에 따르면, M-LEACH 라우팅 프로토콜의 경우에는 여러 센서 노드들을 통하여 데이터가 전달되기 때문에 일정한 크기 이상의 넓은 공간에서 높은 수신율을 보였으며, LEACH-C 라우팅 프로토콜은 싱크 노드(서버)가 전체 센서 노드의 잔여 에너지와 위치를 고려하여 클러스터 헤드를 결정하기 때문에 좁은 공간에서 보다 오랜 수명을 필요로 하는 센서 네트워크를 구축하는데 가장 효율적이라는 것을 확인 할 수 있었다.

Review on Energy Efficient Clustering based Routing Protocol

  • Kanu Patel;Hardik Modi
    • International Journal of Computer Science & Network Security
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    • 제23권10호
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    • pp.169-178
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    • 2023
  • Wireless sensor network is wieldy use for IoT application. The sensor node consider as physical device in IoT architecture. This all sensor node are operated with battery so the power consumption is very high during the data communication and low during the sensing the environment. Without proper planning of data communication the network might be dead very early so primary objective of the cluster based routing protocol is to enhance the battery life and run the application for longer time. In this paper we have comprehensive of twenty research paper related with clustering based routing protocol. We have taken basic information, network simulation parameters and performance parameters for the comparison. In particular, we have taken clustering manner, node deployment, scalability, data aggregation, power consumption and implementation cost many more points for the comparison of all 20 protocol. Along with basic information we also consider the network simulation parameters like number of nodes, simulation time, simulator name, initial energy and communication range as well energy consumption, throughput, network lifetime, packet delivery ration, jitter and fault tolerance parameters about the performance parameters. Finally we have summarize the technical aspect and few common parameter must be fulfill or consider for the design energy efficient cluster based routing protocol.

PRESSURE BASED ROUTING PROTOCOL FOR UNDERWATER WIRELESS SENSOR NETWORKS: A SURVEY

  • Khasawneh, Ahmad;Bin Abd Latiff, Muhammad Shafie;Chizari, Hassan;Tariq, MoeenUddin;Bamatraf, Abdullah
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제9권2호
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    • pp.504-527
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    • 2015
  • Underwater wireless sensor networks (UWSNs) are similar to the terrestrial sensor networks. Nevertheless, there are different characteristics among them such as low battery power, limited bandwidth and high variable propagation delay. One of the common major problems in UWSNs is determining an efficient and reliable routing between the source node and the destination node. Therefore, researchers tend to design efficient protocols with consideration of the different characteristics of underwater communication. Furthermore, many routing protocols have been proposed and these protocols may be classified as location-based and location-free routing protocols. Pressure-based routing protocols are a subcategory of the location-free routing protocols. This paper focuses on reviewing the pressure-based routing protocols that may further be classified into non-void avoidance protocols and void avoidance protocols. Moreover, non-void avoidance protocols have been classified into single factor based and multi factor based routing protocols. Finally, this paper provides a comparison between these protocols based on their features, performance and simulation parameters and the paper concludes with some future works on which further study can be conducted.

수중 센서 네트워크에서 가상의 유클리디언 포인트를 이용한 멀티캐스트 전송기법 (Virtual Euc1idean Point based Multicast routing scheme in Underwater Acoustic sensor networks)

  • 김태성;박경민;김영용
    • 한국통신학회논문지
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    • 제36권7B호
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    • pp.886-891
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    • 2011
  • 본 논문은 수중 센서 네트워크에서 효율적인 하향링크 멀티캐스트 데이터 전송기법을 제시하였다. 기존에 센서 네트워크에서 많은 멀티캐스트 전송 기법이 제안되었지만, 배터리를 지속적으로 공급받거나 충전시키기 어려운 환경에 있는 수중 센서 네트워크에 특화된 멀티캐스트 기법은 없었다. 본 논문에서는 이를 위하여 수중 센서 네트워크에서의 멀티캐스트 두 가지 특성을 파악하여 이를 알고리즘에 적용하였다. 싱크 노드에서 목적지 노드들의 위치 정보를 가공하여서 각도 정보를 추출하였고, 이렇게 추출한 목적지 노드들의 각도 정보를 바탕으로 가상의 유클리디언 스테이너 포인트를 이용한 최적의 멀티캐스트 전송 알고리즘을 제안하였다. 본 알고리즘은 저 계산 능력과 제한된 전송파워를 가지는 수중 센서 네트워크에서 구동하기에 알맞음을 시뮬레이션을 통하여 확인하였다. 제안한 방식은 기존의 방식들에 비하여 감소된 전송 전력과 감소된 라우팅 계산량을 보였다.

Self-Organized Hierarchy Tree Protocol for Energy-Efficiency in Wireless Sensor Networks

  • THALJAOUI, Adel
    • International Journal of Computer Science & Network Security
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    • 제21권9호
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    • pp.230-238
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    • 2021
  • A sensor network is made up of many sensors deployed in different areas to be monitored. They communicate with each other through a wireless medium. The routing of collected data in the wireless network consumes most of the energy of the network. In the literature, several routing approaches have been proposed to conserve the energy at the sensor level and overcome the challenges inherent in its limitations. In this paper, we propose a new low-energy routing protocol for power grids sensors based on an unsupervised clustering approach. Our protocol equitably harnesses the energy of the selected cluster-head nodes and conserves the energy dissipated when routing the captured data at the Base Station (BS). The simulation results show that our protocol reduces the energy dissipation and prolongs the network lifetime.

기가빗 비디오 네트워크에서의 추계적 저전력 버퍼안정 라우팅 (Stochastic Low-Power and Buffer-Stable Routing for Gigabit Wireless Video Networks)

  • 김중헌;류은석
    • 방송공학회논문지
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    • 제18권3호
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    • pp.491-494
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    • 2013
  • 본 논문은 60 GHz 채널을 사용하는 무선장치들이 멀티홉 애드혹 네트워킹의 형태로 배치되어 있을 때에 일부 무선 장치들에서 발생한 비디오 트래픽을 에너지 효율적이며 버퍼가 안정적인 형태로 전달하는 동적/추계적 라우팅 알고리즘을 제안한다. 제안하는 알고리즘은 모든 장치가 정보를 공유할 필요 없이 분산적으로 운영이 되기 때문에 중앙에서 알고리즘을 운영하는 제어장치가 필요 없다. 제안하는 알고리즘에 대한 성능은 시뮬레이션을 통하여 검증되었다.

ID-based Sensor Node Authentication for Multi-Layer Sensor Networks

  • Sung, Soonhwa;Ryou, Jaecheol
    • Journal of Communications and Networks
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    • 제16권4호
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    • pp.363-370
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    • 2014
  • Despite several years of intense research, the security and cryptography in wireless sensor networks still have a number of ongoing problems. This paper describes how identification (ID)-based node authentication can be used to solve the key agreement problem in a three-layer interaction. The scheme uses a novel security mechanism that considers the characteristics, architecture, and vulnerability of the sensors, and provides an ID-based node authentication that does not require expensive certificates. The scheme describes the routing process using a simple ID suitable for low power and ID exposure, and proposes an ID-based node authentication. This method achieves low-cost communications with an efficient protocol. Results from this study demonstrates that it improves routing performance under different node densities, and reduces the computational cost of key encryption and decryption.

Development of Energy-sensitive Cluster Formation and Cluster Head Selection Technique for Large and Randomly Deployed WSNs

  • Sagun Subedi;Sang Il Lee
    • Journal of information and communication convergence engineering
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    • 제22권1호
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    • pp.1-6
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    • 2024
  • Energy efficiency in wireless sensor networks (WSNs) is a critical issue because batteries are used for operation and communication. In terms of scalability, energy efficiency, data integration, and resilience, WSN-cluster-based routing algorithms often outperform routing algorithms without clustering. Low-energy adaptive clustering hierarchy (LEACH) is a cluster-based routing protocol with a high transmission efficiency to the base station. In this paper, we propose an energy consumption model for LEACH and compare it with the existing LEACH, advanced LEACH (ALEACH), and power-efficient gathering in sensor information systems (PEGASIS) algorithms in terms of network lifetime. The energy consumption model comprises energy-sensitive cluster formation and a cluster head selection technique. The setup and steady-state phases of the proposed model are discussed based on the cluster head selection. The simulation results demonstrated that a low-energy-consumption network was introduced, modeled, and validated for LEACH.