scholarly journals Lifetime determination for delay tolerant communications in sparse vehicular networks

Author(s):  
Kadri Kaan Sevimli ◽  
Mujdat Soyturk
Author(s):  
Vandana Kushwaha ◽  
Ratneshwer Gupta

Opportunistic networks are one of the emerging evolutions of the network system. In opportunistic networks, nodes are able to communicate with each other even if the route between source to destination does not already exist. Opportunistic networks have to be delay tolerant in nature (i.e., able to tolerate larger delays). Delay tolerant network (DTNs) uses the concept of “store-carry-forward” of data packets. DTNs are able to transfer data or establish communication in remote area or crisis environment where there is no network established. DTNs have many applications like to provide low-cost internet provision in remote areas, in vehicular networks, noise monitoring, extreme terrestrial environments, etc. It is therefore very promising to identify aspects for integration and inculcation of opportunistic network methodologies and technologies into delay tolerant networking. In this chapter, the authors emphasize delay tolerant networks by considering its architectural, routing, congestion, and security issues.


Author(s):  
Kun-Chan Lan

A Delay Tolerant Network (DTN) is one type of challenged network where network contacts are intermittent or link performance is highly variable or extreme. In such a network, a complete path does not exist from source to destination for most of the time. In addition, the path can be highly unstable and may change or break unexpectedly. To make communication possible in a delay tolerant network, the intermediate nodes need to take custody of data during the blackout and forward it toward the destination when the connectivity resumes. A vehicular network nicely falls into the context of DTN since the mobility of vehicles constantly causes the disruption of link connectivity’s between vehicles. In this chapter, the authors discuss some research challenges and issues which might occur in a Delay Tolerant Network and how they are related to vehicular networks.


2015 ◽  
Vol 50 ◽  
pp. 252-257 ◽  
Author(s):  
Balasubramani ◽  
L. Karthikeyan ◽  
V. Deepalakshmi

2018 ◽  
Vol 2018 ◽  
pp. 1-13 ◽  
Author(s):  
Youngho Park ◽  
Chul Sur ◽  
Kyung-Hyune Rhee

One remarkable feature of vehicular ad hoc networks is characterized by an opportunistic communications by means of store-carry-forward message relaying which requires the cooperation of vehicles on the networks. However, we cannot be sure that all vehicles willingly contribute their computing resources to the networks for message forwarding with no rewards for their efforts in real-world scenarios. In addition, unfortunately, there may exist some selfish and greedy node which may not help others but tend to take their own gain. To cope with this challenge, incentive mechanisms are generally considered as the promising solution. In this paper, we design a Bitcoin-based secure and reliable incentive scheme for cooperative vehicular delay tolerant networking services. Bitcoin is the well-known worldwide cryptocurrency and digital payment system whose implementation relies on cryptographic techniques, which makes it possible to develop a practical credit-based incentive scheme on the vehicular networks at a low cost. We also implement Bitcoin transaction scripts to handle our proposed incentive scheme.


Author(s):  
Julián Morillo-Pozo ◽  
Óscar Trullols-Cruces ◽  
José M. Barceló-Ordinas ◽  
Jorge García-Vidal

Author(s):  
Julián Morillo Pozo ◽  
Oscar Trullols ◽  
José M. Barceló ◽  
Jorge García Vidal

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