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Journal ArticleDOI

Directional routing and scheduling for green vehicular delay tolerant networks

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TLDR
A directional routing and scheduling scheme (DRSS) for green vehicle DTNs is presented by using Nash Q-learning approach that can optimize the energy efficiency with the considerations of congestion, buffer and delay.
Abstract
The vehicle delay tolerant networks (DTNs) make opportunistic communications by utilizing the mobility of vehicles, where the node makes delay-tolerant based "carry and forward" mechanism to deliver the packets. The routing schemes for vehicle networks are challenging for varied network environment. Most of the existing DTN routing including routing for vehicular DTNs mainly focus on metrics such as delay, hop count and bandwidth, etc. A new focus in green communications is with the goal of saving energy by optimizing network performance and ultimately protecting the natural climate. The energy---efficient communication schemes designed for vehicular networks are imminent because of the pollution, energy consumption and heat dissipation. In this paper, we present a directional routing and scheduling scheme (DRSS) for green vehicle DTNs by using Nash Q-learning approach that can optimize the energy efficiency with the considerations of congestion, buffer and delay. Our scheme solves the routing and scheduling problem as a learning process by geographic routing and flow control toward the optimal direction. To speed up the learning process, our scheme uses a hybrid method with forwarding and replication according to traffic pattern. The DRSS algorithm explores the possible strategies, and then exploits the knowledge obtained to adapt its strategy and achieve the desired overall objective when considering the stochastic non-cooperative game in on-line multi-commodity routing situations. The simulation results of a vehicular DTN with predetermined mobility model show DRSS achieves good energy efficiency with learning ability, which can guarantee the delivery ratio within the delay bound.

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Citations
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Threshold based locking routing strategy for delay tolerant network

TL;DR: A novel routing method called as the adaptive threshold based locking method that maintains the contemporary status of the node based on its activity in the network and bolstered the delivery ratio and minimizes hop count, end-to-end delay and number of transmission.
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Multipath routing in mobile ad hoc network with probabilistic splitting of traffic

TL;DR: A mathematical model to compute delay and throughput for multipath routing, following the network of M/M/1 queues, and applying Burke’s theorem to calculate the queuing delay of the packet in mobile network scenario is designed.
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Energy-efficient placement and sleep control of relay nodes in heterogeneous small cell networks

TL;DR: A genetic algorithm with dynamic operator-selection mechanism is further proposed to resolve the power consumption minimization problem for placement and sleep control of legacy RSs and SCs in this network.
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Way-Point Multicast Routing Framework for improving QoS in hybrid wireless mesh networks

TL;DR: The proposed Way-Point Multicast Routing Framework (WPMRF) provides more reliable routing path to increase the quality of service (QoS) with fast route recovery process and helps to select more reliable route path.
References
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Epidemic routing for partially-connected ad hoc networks

TL;DR: This work introduces Epidemic Routing, where random pair-wise exchanges of messages among mobile hosts ensure eventual message delivery and achieves eventual delivery of 100% of messages with reasonable aggregate resource consumption in a number of interesting scenarios.
Proceedings ArticleDOI

A delay-tolerant network architecture for challenged internets

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Journal ArticleDOI

Mobility increases the capacity of ad hoc wireless networks

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Proceedings ArticleDOI

Spray and wait: an efficient routing scheme for intermittently connected mobile networks

TL;DR: A new routing scheme, called Spray and Wait, that "sprays" a number of copies into the network, and then "waits" till one of these nodes meets the destination, which outperforms all existing schemes with respect to both average message delivery delay and number of transmissions per message delivered.
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