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Equal-cost multi-path routing

About: Equal-cost multi-path routing is a research topic. Over the lifetime, 10472 publications have been published within this topic receiving 249362 citations.


Papers
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Journal ArticleDOI
01 Jan 2003
TL;DR: This paper proposes a new paradigm called trajectory based forwarding (or TBF), which is a generalization of source based routing and Cartesian routing, and argues that TBF is an ideal technique for routing in dense ad-hoc networks.
Abstract: Relentless progress in hardware technology and recent advances in sensor technology, and wireless networking have made it feasible to deploy large scale, dense ad-hoc networks. These networks together with sensor technology can be considered as the enablers of emerging models of computing such as embedded computing, ubiquitous computing, or pervasive computing. In this paper, we propose a new paradigm called trajectory based forwarding (or TBF), which is a generalization of source based routing and Cartesian routing. We argue that TBF is an ideal technique for routing in dense ad-hoc networks. Trajectories are a natural namespace for describing route paths when the topology of the network matches the topography of the physical surroundings in which it is deployed which by very definition is embedded computing.We show how simple trajectories can be used in implementing important networking protocols such as flooding, discovery, and network management. Trajectory routing is very effective in implementing many networking functions in a quick and approximate way, as it needs very few support services. We discuss several research challenges in the design of network protocols that use specific trajectories for forwarding packets.

109 citations

Journal ArticleDOI
TL;DR: This work proposes a combined omnidirectional and directional transmission scheme, together with dynamic angle adjustment, which features hybrid use of unicasting and geocasting routing using location and trajectory information for flying ad hoc networks.
Abstract: Ever-increasing demands for portable and flexible communications have led to rapid growth in networking between unmanned aerial vehicles often referred to as flying ad-hoc networks (FANETs). Existing mobile ad hoc routing protocols are not suitable for FANETs due to high-speed mobility, environmental conditions, and terrain structures. In order to overcome such obstacles, we propose a combined omnidirectional and directional transmission scheme, together with dynamic angle adjustment. Our proposed scheme features hybrid use of unicasting and geocasting routing using location and trajectory information. The prediction of intermediate node location using 3-D estimation and directional transmission toward the predicted location, enabling a longer transmission range, allows keeping track of a changing topology, which ensures the robustness of our protocol. In addition, the reduction in path re-establishment and service disruption time to increase the path lifetime and successful packet transmissions ensures the reliability of our proposed strategy. Simulation results verify that our proposed scheme could significantly increase the performance of flying ad hoc networks.

108 citations

Proceedings ArticleDOI
25 Jun 2012
TL;DR: In this article, the authors present energy efficient hierarchical routing protocols, developed from conventional LEACH routing protocol, which work in order to increase the life time and how quality routing protocol are improved for WSNs.
Abstract: An energy efficient routing protocol is the major concern in Wireless Sensor Networks (WSNs). In this survey paper, we present energy efficient hierarchical routing protocols, developed from conventional LEACH routing protocol. Main focus of our study is how these extended protocols work in order to increase the life time and how quality routing protocol are improved for WSNs. Furthermore, this paper also highlights some of the issues faced by LEACH and also explains how these issues are tackled by extended versions of LEACH. We compare the features and performance issues of the selected hierarchical routing protocols.

108 citations

Journal ArticleDOI
TL;DR: Simulations reveal that the lifetime of the network increases significantly by optimal routing, and including delay constraint in energy efficient routing improves the network performance since the delay of thenetwork keeps increasing as the delay constraint is relaxed beyond the value at which the optimal lifetime is achieved.
Abstract: The paper presents a routing algorithm that maximizes the lifetime of a sensor network in which all data packets are destined for a single collection node. Lifetime is maximized by adjusting the number of packets traversing each node. The adjustment is carried out by transmitting over alternative routes. The first part of the paper assumes that the worst case delay resulting from energy efficient routing is less than the maximum tolerable value. Ignoring the delay constraint of the network, the routes are selected as the solution to a linear programming (LP) problem in which the objective is to maximize the minimum lifetime of each node. The solution is implemented in a centralized algorithm, and then approximated by an iterative algorithm based on least cost path routing, in which each step is implemented efficiently in a distributed manner. The second part of the paper incorporates delay guarantee into energy efficient routing by constraining the length of the routing paths from each sensor node to the collection node. Simulations reveal that the lifetime of the network increases significantly by optimal routing, and including delay constraint in energy efficient routing improves the network performance since the delay of the network keeps increasing as the delay constraint is relaxed beyond the value at which the optimal lifetime is achieved.

108 citations

Patent
17 Apr 1998
TL;DR: In this paper, a routing graph for an integrated circuit design is constructed, and a general task for optimizing the routing in the routing graph is generated in parallel by assigning different processors different strips to process.
Abstract: A method for routing nets in an integrated circuit design, said method comprising the steps of forming a routing graph for an integrated circuit design, said routing graph have edges in a first direction and edges in a second direction, globally routing said integrated circuit design in accordance with said routing graph, dividing the routing graph into strips, for each strip in the routing graph, generating a general task for optimizing the routing in the strip, solving general tasks in parallel by assigning different processors different strips to process.

107 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202327
202268
20214
20204
201912
201833