Ajay Kumar Yadav
Indian Institute of Technology Dhanbad
10 Papers
71 Citations
Ajay Kumar Yadav is an academic researcher from Indian Institute of Technology Dhanbad. The author has contributed to research in topics: Pragmatic General Multicast & Source-specific multicast. The author has an hindex of 5, co-authored 6 publications. Previous affiliations of Ajay Kumar Yadav include Indian Institutes of Technology.
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Papers
IE2M: Design of intellectual energy efficient multicast routing protocol for ad-hoc network
TL;DR: The proposed protocol modifies ODMRP and introduces fuzzy inference system to deal with imprecise and partial information during the route discovery phase, and results outperform existing protocols in terms of several network metrics.
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DLBMRP: Design of Load Balanced Multicast Routing Protocol for Wireless Mobile Ad-hoc Network
Ajay Kumar Yadav,Sachin Tripathi +1 more
TL;DR: A traffic load balanced multicast routing protocol (LBMRP) in order to reduce the network overhead and increases the network life and simulation results shows that the proposed LBMRP scheme outperforms with some existing multicasts routing protocols.
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Load balanced multicast routing protocol for wireless mobile ad-hoc network
Ajay Kumar Yadav,Sachin Tripathi +1 more
- 16 Mar 2015
TL;DR: Simulation results show that the proposed LBMRP scheme outperforms multicast ad hoc on-demand distance vector routing protocol (MAODV), reliability of the multicastAd hoc on demand distance vector (RMAodV) and Parallel multiple nearly-disjoint trees multicast routing (Parallel MNTMR) schemes.
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FPGA Implementation of IIR Notch and Anti-Notch Filters with an Application to Localization of Protein Hot-Spots.
TL;DR: In this paper , a high-speed second-order infinite impulse response (IIR) notch filter (NF) and anti-notch filter (ANF) are designed and realized on hardware.
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Design of efficient multicast routing protocol using limited flooding mechanism
Ajay Kumar Yadav,Sachin Tripathi +1 more
- 01 Jan 2016
TL;DR: A new scheme to improve the performance and efficiency of multicast routing protocols using limited flooding mechanism and is inspired by studied some implicit lacks of existing multicast routes such as: weak robustness of dynamic topology, low reliability, low scalability, lack of QoS support, less packet delivery ratio and high packet delivery delay.
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