• Title/Summary/Keyword: Geographic routing

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Blind Detouring Problem in Geographic Routing for Wireless Ad-hoc Networks (무선 애드-혹 망을 위한 위치기반 라우팅에서의 맹목적 우회경로 결정문제)

  • Na, Jong-Keun;Kim, Chong-Kwon
    • Journal of KIISE:Information Networking
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    • v.33 no.6
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    • pp.428-437
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    • 2006
  • Wireless ad-hoc routing has been extensively studied and many clever schemes have been proposed over the last several years. One class of ad-hoc routing is geographic routing where each intermediate node independently selects the next hop using the given location information of destination. Geographic routing, which eliminates the overhead of route request packet flooding, is scalable and suitable for large scale ad hoc networks. However, geographic routing may select the long detour paths when there are voids between a source and a destination. In this paper, we propose a novel geographic routing approach called Geographic Landmark Routing(GLR). GLR recursively discovers the intermediate nodes called landmarks and constructs sub-paths that connect the subsequent landmarks. Simulation results on various network topologies show that GLR significantly improves the performance of geographic routing.

Robust Location Error Detection Protocol for Geographic Routing in indoor Wireless Sensor Networks (실내 무선 센서 네트워크에서 위치 기반 라우팅을 위한 위치 에러 감지 프로토콜)

  • Kong, Young-Bae;Park, Gwi-Tae
    • Proceedings of the IEEK Conference
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    • 2009.05a
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    • pp.51-53
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    • 2009
  • In wireless sensor networks(WSNs), geographic routing algorithms can enhance the network capacity. However, in the real WSNs, it is difficult for each node to know its accurate physical location. Geographic routing with location error may have serious problems such as disconnected links and delayed data transmission. In this letter, we present an efficient location error detection scheme for geographic routing. The proposed algorithm can efficiently update its incorrect location without additional procedure and finally enhance the performance on the geographic routing with the location errors.

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A Geographic Distributed Hash Table for Virtual Geographic Routing in MANET (MANET에서 가상 위치 기반 라우팅을 위한 지역 분산 해쉬 테이블 적용 방법)

  • Ko, Seok-Kap;Kim, Young-Han
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.45 no.12
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    • pp.58-65
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    • 2008
  • This paper presents a new geographic distributed hash table (GDHT) for MANETs or Mesh networks, where virtual geographic protocol is used. In previous wort GDHT is applied to a network scenario based on two dimensional Cartesian coordinate system. Further, logical data space is supposed to be uniformly distributed. However, mobile node distribution in a network using virtual geographic routing is not matched to data distribution in GDHT. Therefore, if we apply previous GDHT to a virtual geographic routing network, lots of DHT data are probably located at boundary nodes of the network or specific nodes, resulting in long average-delay to discover resource (or service). Additionally, in BVR(Beacon Vector Routing) or LCR(Logical Coordinate Routing), because there is correlation between coordinate elements, we cannot use normal hash function. For this reason, we propose to use "geographic hash function" for GDHT that matches data distribution to node distribution and considers correlation between coordinate elements. We also show that the proposed scheme improves resource discovery efficiently.

A Geographic Routing based Data Delivery Scheme for Void Problem Handling in Wireless Sensor Networks (무선 센서 네트워크에서 보이드 문제 해결을 위한 위치 기반 데이터 전송 기법)

  • Kim, Seog-Gyu
    • Journal of the Korea Society of Computer and Information
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    • v.14 no.4
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    • pp.59-67
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    • 2009
  • In wireless sensor networks (WSNs), geographic greedy forwarding fails to move a packet further towards its destination if the sender does not have any closer node to the destination in its one hop transmission region. In this paper, we propose a enhanced geographic routing, called CGR(Cost based Geographic Routing) for efficient data delivery against void problem environment. CGR first establishes Shadow Bound Region and then accomplishes Renewing Cost Function Algorithm for effective greedy forwarding data delivery. Our simulation results show significant improvements compared with existing schemes in terms of routing path length, success delivery ratio and energy efficiency.

Performance Analysis of Position Based Routing Protocol for UAV Networks (UAV 네트워크 환경에 적합한 위치기반 라우팅 프로토콜의 성능 분석)

  • Park, Young-Soo;Jung, Jae-Il
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.37 no.2C
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    • pp.188-195
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    • 2012
  • Many systems are developing for the realization of NCW(Network Centric Warfare). UAV(Unmanned Aerial Vehicle) Network is attracting attention in a lot of military applications. In general, UAVs have the potential to create an ad-hoc network and greatly reduce the hops from source to destination. However, UAV networks exhibit unique properties such as high mobility, high data rate, and real time service. The routing protocols are required to design the multi-hop routing protocols that can dynamically adapt to the requirements of UAV network. In this paper we analyse Geographic Routing Protocol is based on geographical distance between source and destination for efficient and reliable transmission. Geographic Routing Protocol is evaluated in video service scenarios with TDMA model in our simulation. The simulation results show that the performance of Geographic Routing Protocol is better than the MANET Routing Protocol in terms of packet received ratio, end to end delay, and routing traffic sent.

Direction-based Geographic Routing for Wireless Sensor Networks (센서 네트워크에서 장애물 극복을 위한 방향기반의 라우팅 기법)

  • Ko, Young-Il;Park, Chang-Sup;Son, In-Keun;Kim, Myoung-Ho
    • Journal of KIISE:Information Networking
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    • v.33 no.6
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    • pp.438-450
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    • 2006
  • Geographic routing protocols are very attractive choice for routing in wireless sensor networks because they have been shown to scale better than other alternatives. Under certain ideal conditions, geographic routing works correctly and efficiently. The most commonly used geographic routing protocols include greedy forwarding coupled with face routing. Existing face routing algorithms use planarization techniques that rely on the unit-graph assumption. In real world, many conditions violate the unit-graph assumption of network connectivity, such as location errors, communication voids and radio irregularity, cause failure in planarization and consequently face routing. In this paper, we propose the direction-based geographic routing, which enables energy efficient routing under realistic conditions without planarization techniques. Our proposed approach is for the case in which many sensors need to collect data and send it to a central node. Simulation results show that the protocol exhibits superior performances in terms of energy consumption, delivery success rate, and outperforms the compared protocols.

Hole Modeling and Detour Scheme for Geographic Routing in Wireless Sensor Networks

  • Yu, Fucai;Park, Soo-Chang;Lee, Eui-Sin;Kim, Sang-Ha
    • Journal of Communications and Networks
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    • v.11 no.4
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    • pp.327-336
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    • 2009
  • Geographic routing has been considered as an attractive approach in wireless sensor networks, since it routes data packets by using location information rather than global topology information. In geographic routing schemes, packets are usually sent along the boundary of a hole by face routing to detour the hole. As result, all data flows which need to detour the hole are concentrated on the boundary of the hole. This hole detour scheme results in much more energy consumption for nodes at the hole boundary, and the energy exhaustion of hole boundary nodes enlarges the holes. This is referred to as a hole diffusion problem. The perimeter mode may also lead to data collisions on the hole boundary nodes if multiple data flows need to bypass a hole simultaneously. In this paper, we propose a hole modeling and detour scheme for geographic routing in wire-less sensor networks. Our hole modeling and detour scheme can efficiently prevent hole diffusion, avoid the local minimum problem faced by geographic routing protocols, and reduce data collisions on the hole boundary nodes. Simulation results show that the proposed scheme is superior to the other protocols in terms of control overhead, average delivery delay and energy consumption.

Sink Location Dissemination Scheme in Geographic Routing for Wireless Sensor Networks (무선 센서 망을 위한 위치 기반 라우팅에서 싱크 위치 전달 방안)

  • Lee, Eul-Sin;Park, Soo-Chang;Lee, Jeong-Cheol;Kim, Sang-Ha
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.34 no.9B
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    • pp.847-856
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    • 2009
  • In geographic routing for wireless sensor networks, sources need the location of sinks destined for delivering their data packets. Most of the existing geographic routing protocols merely assume that the sources can get the locations of sinks by some location service. How source nodes find out the location of sinks is not easy. In this paper, we propose a sink location dissemination scheme in geographic routing for wireless sensor networks. In this scheme, a source node and a sink node send sink location announcement and query messages along two paths respectively by geographic routing. The node located on the crossing point of the two paths informs the source about the sink location. Then the source can send data packet to the sink by geographic routing. How to guarantee that these two paths have at least one crossing point in any irregular profile of sensor network is the challenge of this paper Simulation results show that our protocol is significantly superior to other protocols in terms of energy consumption and control overhead.

Performance Study for Impact of Mobility Model and Position Update Interval in Geographic Routing

  • Dong, Lihua;Kim, Ki-Il
    • Journal of information and communication convergence engineering
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    • v.7 no.4
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    • pp.489-495
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    • 2009
  • Geographic routing has attracted many researcers with no need for routing table to forward packet in mobile ad hoc networks. Previously, some literatures have mentioned how to improve the performance via simulation results. However, they didn't address the impact of various mobility models and beacon interval, which is used to maintain recent position information for nodes. In this paper, we introduce well-known geographic routing protocol called as GPSR and conduct simulation to identify the impact of these parameters. Even though GPSR shows acceptable performance in most cases, sometimes its performance becomes worse than what we expect.

Disjointed Multipath using Energy Efficient Face Routing in Wireless Sensor Networks (무선 센서 망에서 에너지 효율적인 페이스 라우팅을 활용한 분리된 다중 경로 방안)

  • Cho, Hyunchong;Kim, Cheonyong;Kim, Sangdae;Oh, Seungmin;Kim, Sang-Ha
    • KIISE Transactions on Computing Practices
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    • v.23 no.2
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    • pp.116-121
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    • 2017
  • In wireless sensor networks, the multipath prefers energy efficient routing method due to the characteristic of low-power sensor which uses geographic method to transmit data packet through information of the neighbor nodes. However, when multipath meets the routing fail area called hole area, path overlap problem can occur, resulting in failed maintenance of disjoint multipath. To solve this problem, multipath research studies have been performed to exploit the modeling and detouring method in routing fail area by keeping the disjoint multipath. However, in an energy point of view, additional method like modeling can lead to a lot of energy consumption of sensor node. Moreover, lots of energy consumption of sensor node can shorten the life span of sensor network. In this study, we proposed an energy efficient geographic routing by keeping the disjoint multipath in routing fail area. The proposed scheme exploited the face routing using the geographic recovery method without additional method like modeling.