Video on Demand Caching System using NIPBCS over Mobile Ad Hoc Network

Author(s):  
Vaithegy Doraisamy ◽  
Saleh Ali Alomari ◽  
Putra Sumari
2013 ◽  
Vol 6 (1) ◽  
pp. 705-710
Author(s):  
Kavita Kundlik Bondre ◽  
Prof. Ajitsinh.N. Jadhav

Mobile ad hoc network is a collection of wireless nodes that dynamically organize themselves to form a network without the need for any fixed infrastructure or centralized administration. The network topology dynamically changes frequently in an unpredictable manner since nodes are free to move. Support for multicasting is essential in such environment as it is considered to be an efficient way to deliver information from source nodes to many client nodes. On-Demand Multicast Routing Protocol is a protocol for routing multicast and unicast traffic throughout adhoc wireless mesh networks. ODMRP creates routes on demand so they suffer from a route acquisition delay,although it helps reduce network traffic in general. In future this  results will be compared with AODV and FSR protocol and ODMRP performs better as compared with AODV and FSR protocol.


2017 ◽  
Vol 9 (2) ◽  
pp. 211-217
Author(s):  
Agus Halid ◽  
Leonardo O. J Takumansang ◽  
Mohammad Fajar

Penelitian ini bertujuan untuk menerapkan dan mengevaluasi protokol Dynamic Mobile Ad-Hoc Network (DYMO) pada sistem monitoring lahan pertanian berbasis jaringan sensor nirkabel. Rancangan jaringan terdiri dari node sensor yang ditempatkan secara statik di lahan pertanian dan node router serta gateway sebagai node bergerak yang dibawa oleh petani/mobil pertanian. Hasil evaluasi menunjukkan bahwa protokol DYMO dapat digunakan pada jaringan sensor nirkabel untuk sistem monitoring lahan pertanian. Evaluasi rancangan dan skenario di atas lingkungan simulasi OPNET memperlihatkan kinerja jaringan menggunakan protokol DYMO dapat diterima. Salah satu pengujian memperlihatkan rata-rata delay pengiriman dan penerimaan data sebesar 10,812506/ms, minimal waktu delay end-to-end pengiriman dan penerimaan node sebesar 19,105028/ms, maksimal sebesar 19,643988/ms, dan rata-rata pengiriman dan penerimaan delay end-to-end yaitu 19,377766/ms, nilai rata-rata throughput sebesar 46.651 bits/sec. Selain itu, evaluasi awal prototip node sensor berbasis XBee pada jarak 120 meter menunjukkan kinerja jaringan seperti kehilangan paket (packet loss) dan kekuatan sinyal yang dapat diterima.


2015 ◽  
Vol 40 (4) ◽  
pp. 267-298 ◽  
Author(s):  
Himadri Nath Saha ◽  
Rohit Singh ◽  
Debika Bhattacharyya ◽  
P.K. Banerjee

Abstract With advent of technology MANET is becoming more and more ubiquitous, and so is the vulnerability of such networks to attacks. In this paper, we propose a secure, lightweight, on-demand routing protocol for MANETs. It uses the concept of fidelity to allocate trust to a neighbor, thereby taking the decision whether to send data via that neighbor or not. To combat attacks efficiently new packets like report and recommendation are used. After receiving a few of these packets a node can conclude about the behavior of a node, thereby identifying and blacklisting the malicious nodes. We try to impose bounds for the fidelity with reference to the battery of the node, which restricts a node to increase its fidelity to infinity and become dominant in the network. This protocol not only finds a secure route to transmit data, but also identifies the malicious nodes in the network. Our protocol exhibits high packet delivery fraction, with low normalized routing load and low end to end delay; which has been observed while simulating in GloMoSim platform. We have observed that our protocol performs not only better than other existing secure routing protocol in a malicious environment, but also combats, many attacks which have not been dealt with these protocols.


2020 ◽  
Vol 4 (1) ◽  
pp. 77-81
Author(s):  
Ghassan A. Qasmarrogy ◽  
Yazen S. Almashhadani

It is important to connect wirelessly a group of moving mobile nodes together in a static or dynamic form, to transfer digital data between them, this form known as a mobile ad hoc network. This private network can be used in different essential situations where it depends on each connected mobile node to deliver and pass the data between them, without any fixed access point or router. Unfortunately, there are different types of attacks that can affect these nodes, and steal or corrupt the data inside, one of these attacks called the black hole attack. In this paper, a compared study will be done between two major innovative techniques derived from the ad hoc on-demand distance vector routing protocol to avoid the black hole attack; the paper will compare the two techniques in delay, throughput and packet dropping efficacy.


Sign in / Sign up

Export Citation Format

Share Document