• Title/Summary/Keyword: power-based routing

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Delay and Energy-Aware Routing Algorithm For Energy-Constrained Wireless Networks (무선 Ad-hoc 네트워크환경에서 전송지연과 에너지소비를 고려한 라우팅 알고리즘)

  • Casaquite, Reizel;Hwang, Won-Joo
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.11 no.9
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    • pp.1799-1805
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    • 2007
  • Wireless Ad-hoc networks may contain nodes of various types of which many can have limited power capabilities. A failure of a node due to energy exhaustion may impact the performance of the whole network hence, energy must be conserved. In this paper, we propose a Delay and Energy-Aware Routing (DEAR) algorithm a multiple metric path cost routing algorithm which considers not only the energy consumed by the node during transmission and reception but as well as the residual energy of the node and the delay incurred during route discovery. Based on our results, DEAR algorithm performs well and maximizes network lifetime by routing flows to nodes with sufficient energy such that the energy consumption is balanced among nodes in proportion to their energy reserves.

Correlation Distance Based Greedy Perimeter Stateless Routing Algorithm for Wireless Sensor Networks

  • Mayasala, Parthasaradhi;Krishna, S Murali
    • International Journal of Computer Science & Network Security
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    • v.22 no.1
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    • pp.139-148
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    • 2022
  • Research into wireless sensor networks (WSNs) is a trendy issue with a wide range of applications. With hundreds to thousands of nodes, most wireless sensor networks interact with each other through radio waves. Limited computational power, storage, battery, and transmission bandwidth are some of the obstacles in designing WSNs. Clustering and routing procedures have been proposed to address these concerns. The wireless sensor network's most complex and vital duty is routing. With the Greedy Perimeter Stateless Routing method (GPSR), an efficient and responsive routing protocol is built. In packet forwarding, the nodes' locations are taken into account while making choices. In order to send a message, the GPSR always takes the shortest route between the source and destination nodes. Weighted directed graphs may be constructed utilising four distinct distance metrics, such as Euclidean, city block, cosine, and correlation distances, in this study. NS-2 has been used for a thorough simulation. Additionally, the GPSR's performance with various distance metrics is evaluated and verified. When compared to alternative distance measures, the proposed GPSR with correlation distance performs better in terms of packet delivery ratio, throughput, routing overhead and average stability time of the cluster head.

A Novel Optimization-Based Approach for Minimum Power Multicast in Wireless Networks

  • Yen, Hong-Hsu;Lee, Steven S.W.;Yap, Florence G.H.
    • Journal of Communications and Networks
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    • v.13 no.1
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    • pp.26-31
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    • 2011
  • In this paper, we formulate the minimum power multicast problem in wireless networks as a mixed integer linear programming problem and then propose a Lagrangean relaxation based algorithm to solve this problem. By leveraging on the information from the Lagrangean multiplier, we could construct more power efficient routing paths. Numerical results demonstrate that the proposed approach outperforms the existing approaches for broadcast, multicast, and unicast communications.

An Energy Efficient Routing Protocol for Unicast in Wireless Sensor Networks (무선 센서 네트워크에서 유니캐스트를 위한 에너지 효율적인 라우팅 프로토콜)

  • Han, Uk-Pyo;Lee, Hee-Choon;Chung, Young-Jun
    • Journal of KIISE:Information Networking
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    • v.34 no.4
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    • pp.262-268
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    • 2007
  • The efficient node-energy utilization in wireless sensor networks has been studied because sensor nodes operate with limited power based on battery. To extend the lifetime of the wireless sensor networks, maintaining balanced power consumption between sensor nodes is more important than reducing total energy consumption of the overall network. Since a large number of sensor nodes are densely deployed and collect data by cooperation in wireless sensor network, keeping more sensor nodes alive as possible is important to extend the lifetime of the sensor network. In this paper, we submit an efficient energy aware routing protocol based on AODV ad hoc routing protocol for wireless sensor networks to increase its lifetime without degrading network performance. The proposed protocol is designed to avoid traffic congestion on minor specific nodes at data transfer and to make the node power consumption be widely distributed to increase the lifetime of the network. The performance of the proposed protocol has been examined and evaluated with the NS-2 simulator in terms of network lifetime and end-to-end delay.

A Study on the Minimum Route Cost Routing Protocol for 6LoWPAN (6LoWPAN을 위한 최소경로비용 라우팅 프로토콜에 관한 연구)

  • Kim, Won-Geun;Kim, Jung-Gyu
    • Journal of Korea Society of Industrial Information Systems
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    • v.15 no.1
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    • pp.1-14
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    • 2010
  • It is recently issued scalability, mobility and external internet connection on Wire-less sensor network. The low power wireless sensor networks based on IPv6 technology 6LoWPAN technology is being standardized in the IETF. This paper for the 6LoWPAN environment based on the routing protocol LOAD, route cost applied the packet re-transmission rate which follows in Link Qualities price which uses at course expense and packet transmission Minimum route Cost routing protocol where does on the course wherethe smallest packet re-transmission becomes accomplished proposed. The technique which proposes compared and LOAD and AODV that about 13%, about 16% energy consumption is few respectively averagely, Energy of the entire network equally, used and energy effectiveness and improvement of network life time experiment led and confirmed.

Two Solutions for Unnecessary Path Update Problem in Multi-Sink Based IoT Networks (멀티 싱크 기반 IoT 네트워크에서 불필요한 경로 업데이트 문제와 두 가지 해결 기법)

  • Lee, Sungwon;Kang, Hyunwoo;Yoo, Hongsoek;Jeong, Yonghwan;Kim, Dongkyun
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.40 no.12
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    • pp.2450-2460
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    • 2015
  • Recently, as interest in IoT (Internet of Things) increase, research and standardization of a new protocol which reflects the characteristics of IoT has progressed. Among them, RPL(IPv6 for Low-Power Lossy Network) is a standardized routing protocol for IoT. RPL utilizes DIO (DODAG Information Object) messages which is flooded from the sink node to the whole network for path establish and maintenance. However, in large scale networks, not only a long time is required to propagate the DIO message to the whole networks but also a bottleneck effect around the sink node is occurred. Multi-sink based approaches which take advantage of reducing routing overhead and bottleneck effect are widely used to solve these problems. In this paper, we define 'unnecessary path update problems' that may arise when applying the RPL protocol to the multi sink based IoT networks and propose two methods namely Routing Metric based Path Update Decision method and Immediate Successor based Path Update Decision method for selective routing update.

An Energy-aware Dynamic Source Routing Algorithm for Mobile Ad-hoc Networks (이동 애드혹 네트워크에서 에너지를 고려한 동적 소스 라우팅 알고리즘)

  • Lee, Cheong-Yeop;Shin, Yong-Hyeon
    • Journal of the Korea Society of Computer and Information
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    • v.16 no.10
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    • pp.165-173
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    • 2011
  • In Mobile Ad-hoc Network(MANET), mobile nodes are operated by limited batteries. Therefore, it is very important to consume the battery power efficiently to prevent termination of the network. In this paper, we propose Energy-aware Dynamic Source Routing(EDSR) which is based on the Dynamic Source Routing(DSR) to increase the packet transmission and lifetime of the network. If the battery power of a node reaches threshold level, then the node gives up the function of relaying to save battery power except as a source and a destination node. While the conventional DSR doesn't consider the battery consumptions of the nodes, EDSR blocks the nodes from relaying whose battery powers are below the threshold level. Simulation results show the proposed EDSR is more efficient in packet transmission and network lifetime through the balanced battery consumption of the mobile nodes.

Pro-active Routing Selection and Maintenance Algorithms for Mobile Ad Hoc Network Environments (이동 Ad Hoc 네트워크 환경에서 사전 활성화 라우팅 선택과 관리유지 알고리즘)

  • Cho Young-Joo;Chung Il-Yong
    • Journal of Korea Multimedia Society
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    • v.9 no.5
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    • pp.606-614
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    • 2006
  • The conventional on-demand mobile ad hoc routing algorithms (DSR and AODV) initiate route discovery only after a path breaks, incurring a significant cost and time in detecting the disconnection and establishing a new route. In this theory, we investigate adding proposed pro-active route selection and maintenance to the conventional on-demand mobile ad hoc routing algorithms(DSR and AODV). The key idea is to be only considered likely to be a path break when the received packet power becomes close to the minimum critical power and to be generated the forewarning packet when the signal power of a received packet drops below a optimal threshold value. After generated the forewarning packet, the source node can initiate rout discovery in advance; potentially avoiding the disconnection altogether. Our extensive simulation study shows that the proposed advance-active route selection and maintenance algorithms outperforms the conventional on-demand routing protocol based on DSR and AODV in terms of packet delivery ratio, packet latency and overhead.

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On Optimizing Route Discovery of Topology-based On-demand Routing Protocols for Ad Hoc Networks

  • Seet, Boon-Chong;Lee, Bu-Sung;Lau, Chiew-Tong
    • Journal of Communications and Networks
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    • v.5 no.3
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    • pp.266-274
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    • 2003
  • One of the major issues in current on-demand routing protocols for ad hoc networks is the high resource consumed by route discovery traffic. In these protocols, flooding is typically used by the source to broadcast a route request (RREQ) packet in search of a route to the destination. Such network-wide flooding potentially disturbs many nodes unnecessarily by querying more nodes than is actually necessary, leading to rapid exhaustion of valuable network resources such as wireless bandwidth and battery power. In this paper, a simple optimization technique for efficient route discovery is proposed. The technique proposed herein is location-based and can be used in conjunction with the existing Location-Aided Routing (LAR) scheme to further reduce the route discovery overhead. A unique feature of our technique not found in LAR and most other protocols is the selective use of unicast instead of broadcast for route request/query transmission made possible by a novel reuse of routing and location information. We refer to this new optimization as the UNIQUE (UNIcast QUEry) technique. This paper studies the efficacy of UNIQUE by applying it to the route discovery of the Dynamic Source Routing (DSR) protocol. In addition, a comparative study is made with a DSR protocol optimized with only LAR. The results show that UNIQUE could further reduce the overall routing overhead by as much as 58% under highly mobile conditions. With less congestion caused by routing traffic, the data packet delivery performance also improves in terms of end-to-end delay and the number of data packets successfully delivered to their destinations.

Power Aware Routing Protocol based on Both Threshold by Residual Battery Capacity and Signal Strength in Mobile Ad-hoc Network (Mobile Ad-hoc 네트워크에서 Threshold 적용과 신호세기 기반의 효율적인 파워소모 라우팅 프로토콜)

  • Park Gun-Woo;Song Joo-Seok
    • Proceedings of the Korea Information Processing Society Conference
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    • 2006.05a
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    • pp.1139-1142
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    • 2006
  • Mobile Ad-hoc 네트워크(MANET)에서 각 노드들은 한정된 배터리에 의존하여 통신한다. 이와 같은 제한사항을 극복하기 위해 링크의 안정성을 유지하거나 파워 소모를 고려한 프로토콜에 대한 연구들이 활발히 이루어져 왔다. 하지만 링크의 안정성 또는 파워 소모의 어느 한 측면만을 고려함으로써 링크의 안정성은 높일 수 있으나 파워 소모가 효율적이지 못했다. 반면에 전체 파워소모는 줄일 수 있었으나 파워소모의 균형을 이루지 못함으로써 네트워크 수명을 오래 지속시킬 수 없는 문제점이 발생 했다. 본 논문에서는 배터리 잔량에 대한 threshold를 적용함과 동시에 신호세기를 고려하여 각 노드들의 균형된 파워소모와 네트워크 전체의 파워 소모를 최소화함으로써 네트워크 수명을 오래 지속시키기 위한 프로토콜인 PRTRS(Power Aware Routing Protocol based on Both Threshold by Residual Battery Capacity and Signal Strength in Mobile Ad-hoc Network)를 제안한다. PRTRS는 AODV(Ad-hoc On-demand Distance Vector Routing)를 기반으로 하였다. NS-2 네트워크 시뮬레이션 결과 PRTRS는 특정 노드로 집중되는 트래픽을 분산시켜 파워소모의 균형을 이루고 네트워크 전체의 파워소모를 최소화함으로써 네트워크 수명이 연장됨을 확인하였다.

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