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Paper Title
Energy-efficient relay selection mechanisum
Authors
Noor bahar Khanum Afridi H.S , Dr. Manjunatha.P , Shoiab Ahmed
Keywords
Wireless body area network, Forwarding data for Energy-efficient, synergistic Transferring.
Abstract
Collecting the physiological data from the Human body by continuously monitoring are the major part of the wireless body area network [WBANs]. The limited energy of the each WBANs network node and depletion energy which causes the severe in the network performance disgrace such as latency and the energy strategy. The result of the heterogeneity is different for the different sensor consumption of the energy rate. As mentioned the above problems an, Energy-efficient routing mechanism is proposed in these paper which can manages the energy consumption in body sensor and increase the network lifetime. Our major work done includes: (1) the original Physiological data are processed by discrete wavelet transform [DWT] compressive sensing [CS] which can reduced the data size of the network node which can be transmitted further.(2) the remaining energy levels, are can be used as residual energy are can be consider by Energy-efficient data forwarding strategy [EDFs] for the optimal selecting the relay. In addition, the simulation results demonstrate that the EDFs cab be effectively deal with the WBANs topologies which can be providing balance the energy in the network.
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IJRTI — journal style
"Energy-efficient relay selection mechanisum", IJRTI - International Journal for Research Trends and Innovation (www.ijrti.org), ISSN:2456-3315, Vol.2, Issue 8, page no.112 - 119, August-2017, Available :https://ijrti.org/papers/IJRTI1708020.pdf
APA — 7th edition
H.S, N. B. K. A., Manjunatha.P, & Ahmed, S. (2017). Energy-efficient relay selection mechanisum. International Journal for Research Trends and Innovation, 2(8), 112 - 119. https://ijrti.org/viewpaperforall.php?paper=IJRTI1708020
MLA — 9th edition
H.S, Noor bahar Khanum Afridi, et al. "Energy-efficient relay selection mechanisum." International Journal for Research Trends and Innovation, vol. 2, no. 8, 2017, pp. 112 - 119, https://ijrti.org/viewpaperforall.php?paper=IJRTI1708020.
Chicago — 17th, bibliography
H.S, Noor bahar Khanum Afridi, Manjunatha.P, and Shoiab Ahmed. "Energy-efficient relay selection mechanisum." International Journal for Research Trends and Innovation 2, no. 8 (2017): 112 - 119. https://ijrti.org/viewpaperforall.php?paper=IJRTI1708020.
Harvard — author–date
H.S, N.B.K.A., Manjunatha.P and Ahmed, S. (2017) 'Energy-efficient relay selection mechanisum', International Journal for Research Trends and Innovation, 2(8), pp. 112 - 119. Available at: https://ijrti.org/viewpaperforall.php?paper=IJRTI1708020
IEEE — numbered reference
N. B. K. A. H.S, Manjunatha.P and S. Ahmed, "Energy-efficient relay selection mechanisum," IJRTI, vol. 2, no. 8, pp. 112 - 119, Aug. 2017.
Vancouver — biomedical
H.S NBKA, Manjunatha.P, Ahmed S. Energy-efficient relay selection mechanisum. IJRTI. 2017 Aug;2(8):112 - 119.
AMA — 11th edition
H.S NBKA, Manjunatha.P, Ahmed S. Energy-efficient relay selection mechanisum. IJRTI. 2017;2(8):112 - 119. Accessed at https://ijrti.org/viewpaperforall.php?paper=IJRTI1708020
BibTeX — Zotero, Mendeley, LaTeX
@article{IJRTI1708020,
author = {Noor bahar Khanum Afridi H.S and Manjunatha.P and Shoiab Ahmed},
title = {Energy-efficient relay selection mechanisum},
journal = {International Journal for Research Trends and Innovation},
volume = {2},
number = {8},
pages = {112 - 119},
year = {2017},
month = {August},
issn = {2456-3315},
url = {https://ijrti.org/viewpaperforall.php?paper=IJRTI1708020}
}
RIS — EndNote, RefWorks
TY - JOUR
AU - H.S, Noor bahar Khanum Afridi
AU - Manjunatha.P
AU - Ahmed, Shoiab
TI - Energy-efficient relay selection mechanisum
T2 - International Journal for Research Trends and Innovation
JA - IJRTI
VL - 2
IS - 8
PY - 2017
SN - 2456-3315
UR - https://ijrti.org/viewpaperforall.php?paper=IJRTI1708020
SP - 112
EP - 119
ER -
International Journal for Research Trends and InnovationPublished by IJRTI (JW Publication)
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Declarations
Funding
No external funding was received for this study.
Conflict of Interest
The authors declare that they have no conflict of interest.
Acknowledgements
The authors would like to thank the reviewers and the editorial board of International Journal for Research Trends and Innovation for their careful reading and constructive comments, and all colleagues who supported the preparation of this manuscript.