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International Journal of Recent Trends in Electronics and Communication

  • ISSN (Print) : xxxx-xxxx
  • ISSN (Online) : xxxx-xxxx
  • Impact Factor : x.xxx
  • Frequency : 02
  • Publisher : A D Publication

Jounaral Scope

International Journal of Recent Trends Electronics and Communication (IJRTEC) is peer- reviewed  (refereed)  international journal published by A D Publication. Its aim to provide the most complete and reliable source of information on current and Futuristic research. It is a leading e-journal, under which we are encouraging and exploring newer ideas of current trends in research by publishing papers containing pure knowledge. The Journal is started with noble effort to help the researchers in their work and also to share knowledge and research ideas. The journal reviews papers within short time of submission and publishes accepted articles on the internet immediately upon receiving the final versions.

Salient Feature

Open access Journal : Journal is an open access journal and the paper published in the serial publication can be downloaded from the archive section free of cost in pdf format.

Reputed Editorial Board : Journal has a panel of distinguished Editorial Board members from multiple countries along with finest reviewers to strengthen the quality of publication.

Strict Plagiarism Policy : Each manuscript passes through our Plagiarism testing tool before issuance of Acceptance for publication in Journal.

Rapid Publication Process : The paper submitted to Journal is evaluated within a period of 2-3 weeks for acceptance/ rejection after plagiarism testing and peer review followed by a simple and fast publication process.

Certification of Publication : A Softcopy of Certificate of Publication is issued to the corresponding author free of cost. Authors can also order for Hard copy certificates if required for academic purposes.

Highly Indexed & Impact Factor Journal : Journal is indexed with google scholar, Issuu, dox top, academia.edu, docstoc , Scribd, Slide share, etc.

Online paper Submission : Authors can submit manuscript online.

Nominal Processing and Publication Charges : It is a free Journal. We provide Soft copy of certificate to each author, Soft copy of letter of acceptance, Soft copy of reviewer evaluation card free of cost.

The hardcopy certificates can be ordered @ Rs 200 (INR) / $20 per author per certificate for academic purpose (optional).

Environment Friendly Policy : We insist for ONLINE publication only, as the journal is open access, so one can download the published papers for unrestricted reprints as and when required. We believe that we have a responsibility towards the environment and every paper saved is worth saving the Mother Nature.

International Journal of Recent Trends Electronics and Communication (IJRTEC) accepting manuscripts for publication in following fields:

Applied Electromagnetics and RF Circuits

  • Advanced Electromagnetic Materials for RF and Microwave Applications
  • Antennas
  • Computational Electromagnetics
  • Radio Frequency (RF), Microwave, and Millimeter-wave Circuits
  • Wave Propagation

Communications

  • Channel Coding Theory and Applications
  • Communication Networks and Multi-Agent Systems
  • Information Theory
  • Optical Communications
  • Random Processes
  • Wireless Communication Systems

Control Systems

  • Discrete Event and Hybrid Systems
  • Embedded Control Systems
  • Linear Feedback Control
  • Modeling and Control of Automotive Powertrain Systems
  • Nonlinear Control
  • Production Systems Engineering
  • Stochastic Control

Embedded Systems

  • Embedded systems are special-purpose computers built into other things.

Integrated Circuits and VLSI

  • Analog Circuits
  • Data converters
  • Digital circuits
  • Energy harvesting
  • Hardware DSP implementation
  • Low power circuits
  • RF circuits
  • Sensing systems

Signal & Image Processing

Solid-State Devices and Nanotechnology

  • Displays and Detectors
  • High Frequency Devices and Circuits
  • Integrated Photonics and Optoelectronics with Quantum Confined Heterostructures
  • Materials for Solid State Electronic and Optoelectronic Devices
  • Nanotechnology and Nanofabrication

Chief Editor:

Dr. J M Rathod

Electronics Engineering Department, BVM Engineering College,Gujarat,India

email: jmrathod@bvmengineering.ac.in

Associate Editor:

Dr. Jaymin K. Bhalani

Electronics Engineering Department,BITS edu campus, Varnama,Vadodara-Mumbai NH#8,Varnama,Vadodara,Gujarat,India

email: Jaymin88@yahoo.com

Editor Board:

Dr.D.M.Patel

Electronics Engineering Department,BVM Engineering College,NearShastriMaidan,V V Nagar,Gujarat,India

email: dmpatel@bvmengineering.ac.in

Dr.K.G.Maradia

Electronics Engineering Department,Engineering College,India

email: kgmaradia@yahoo.com

Dr. Mahfuzah Mustafa

Faculty of Electrical & Electronics Engineering,Universiti Malaysia Pahang Main Campus-26600, Pekan, Pahang, Malaysia

email: mahfuzah@ump.edu.my

Total Teaching / Industrial / Research Experience in year: 20

Total Number of paper published (National / International /Journal / Conference): 30

Dr. Norizam Sulaiman

Faculty of Electrical & Electronics Engineering,Universiti Malaysia Pahang Main Campus-26600, Pekan, Pahang, Malaysia

email: norizam@ump.edu.my

Dr. Zainah Md Zain

Faculty of Electrical and Electronics Engineering, Universiti Malaysia Pahang, Pekan Branch, 26600 Pekan, Pahang, Malaysia

email: zainah@ump.edu.my

Dr. Chirag N paunwala

Electronics and Communication Department, Sarvajanik college of Engg and Tech,India

email: chirag.paunwala@scet.ac.in

Total Teaching / Industrial / Research Experience in year: 18

Total Number of paper published (National / International /Journal / Conference): 30

Dr. Saurabh N. Mehta

Department of Electronics and Telecommunication, Vidyalankar Institute of Technology, Vidyalankar Marg, Wadala(East), Mumbai,India

email: saurabh.n.mehta@gmail.com

Dr. D L Vala

Electronics Engineering Department, BVM Engineering College,Gujarat,India

email: dlvala@bvmengineering.ac.in

Dr. S K Hadia

Charusat,Changa,Gujarat,India

email: skhadia.ec@ecchanga.ac.in

Dr. & Assoc. Prof Khaled Daqrouq

Department of Electrical and Computer Engineering King Abdulaziz University, Jeddah, 22254, Saudi Arabia

email: haleddaq@gmail.com

Dr. Ali Safaa Sadiq

Computer Systems & Networking Department, Faculty of Computer Systems & Software Engineering, Universiti Malaysia Pahang,Malaysia

email: alisafa09@gmail.com

Dr. Haitham Jabbar Taha

Department of Electrical Engineering, University of Technology, Baghdad, Iraq.

email: haithm1969@yahoo.com

Prof. Mohamed Moussaoui

National School of Applied Sciences of Tangier (ENSAT), Abdelmalek Essaadi University

email: moussaoui@ensat.ac.ma

Dr. Rajib Kar

Department of ELectronics and Communication Engg. NIT Durgapur-9, India

email: rajibkarece@gmail.com

Dr. Bohumil Brtnik

Faculty of Electrical Engineering and Informatics University of Pardubice, Pardubice, Czech Republic

email: bohumil.brtnik@upce.cz

Dr. Korhan Cengiz

Electrical-Electronics Engineering Department, Trakya University

email: dr.korhan.cengiz@ieee.org

Dr. Suresh P

Vel Tech Dr. RR & Dr. SR Technical University,India

email: suresh3982@yahoo.co.in

Dr. Julián Antonio Pucheta

Faculty of Exact, Physical and Natural Sciences National University of Córdoba, Córdoba, Argentina.

email: julian.pucheta@yahoo.com.ar

Total Teaching / Industrial / Research Experience in year: 18

Total Number of paper published (National / International /Journal / Conference): 104

Prof. Diego P. Pinto-Roa

Universidad Nacional de Asunción

email: dppintoroa@gmail.com

Joydeep Bhattacharyya

Senior Design Verification Engineer, Data Center Group Intel Corporation, San Jose, CA-95134 USA
Volumn : 1, Issue : 1
SR No.Paper TitlePage No.Download
1

Analysis of Improvement in Bandwidth and Multiband Behavior of Metamaterial Based Microstrip Patch Antenna

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Tushar Pravinchandra Dave, Jagdish M. Rathod

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MLA : Dave, Tushar et al."Analysis of Improvement in Bandwidth and Multiband Behavior of Metamaterial Based Microstrip Patch Antenna","International Journal of Recent Trends in Electronics and Communication" (2016).

APA : Dave, Tushar et al. (2016)."Analysis of Improvement in Bandwidth and Multiband Behavior of Metamaterial Based Microstrip Patch Antenna", International Journal of Recent Trends in Electronics and Communication.

Chicago : Dave, Tushar et al."Analysis of Improvement in Bandwidth and Multiband Behavior of Metamaterial Based Microstrip Patch Antenna", "International Journal of Recent Trends in Electronics and Communication" (2016).

This paper presents the analysis of latest advancement achieved by researchers in the development of improving the parameters of microstrip patch antenna. The main focus of paper is on metamaterials as this material is used to extend the capability of microstrip patch antenna and ultimately antenna can be improved for its utilization in different applications which were not earlier due to limitations of size, bandwidth, gain and efficiency of microstrip patch antenna.

Metamaterials, Artificial magneto-dielectric substrate, Impedance bandwidth
  • [1]            C.A.Balanis, Modern Antenna Handbook ( New York; Willey, 2008).
  • [2]             Girishkumar and K.P.Ray, Broadband Microstrip Antennas ( Artech House,2003).
  • [3]            N.Engheta, W.Ziolkowski, Metamaterials: Physics and Engineering Exploration (New York; Willey, 2006).
  • [4]            N. Engheta and R.W. Ziolkowski (guest editors), IEEE Trans. Antennas Propag., Special Issue on Metamaterials, vol.51, pp.2546– 2750, Oct. 2003.
  • [5]            N. Engheta and R.W. Ziolkowski, eds., Metamaterials: Physics and Engineering Explorations,Wiley-IEEE Press, Piscataway, NJ, 2006.
  • [6]            Rathod, Jagdish M., "Comparative study of microstrip patch antenna for wireless communication application." International Journal of Innovation, Management and Technology 1.2 ,2010: 194-197.
  • [7]            Rathod, Jagdish M., "Design Development of Antenna for TV Transmission for Connecting Outdoor Broadcasts Van to the Studio for Rural Areas."International Journal of Computer and Electrical Engineering 2.2, 2010: 251-256.
  • [8]            Tong Cai; Guang-Ming Wang; Xiao-Fei Zhang; Ya-Wei Wang; Bin-Feng Zong; He-Xiu Xu, "Compact Microstrip Antenna With Enhanced Bandwidth by Loading Magneto-Electro-Dielectric Planar Waveguided Metamaterials," in Antennas and Propagation, IEEE Transactions on , vol.63, no.5, pp.2306-2311, May 2015
  • [9]            Ouedraogo, R.O.; Rothwell, E.J.; Diaz, A.R.; Fuchi, K.; Temme, A., "Miniaturization of Patch Antennas Using a Metamaterial-Inspired Technique," in Antennas and Propagation, IEEE Transactions on , vol.60, no.5, pp.2175-2182, May 2012
  • [10]         Saghanezhad, S.A.H.; Atlasbaf, Z., "Miniaturized Dual-Band CPW-Fed Antennas Loaded With U-Shaped Metamaterials," in Antennas and Wireless Propagation Letters, IEEE , vol.14, no., pp.658-661, 2015
  • [11]         D. R. Luna, V. P. Silva Neto, C. F. L. Vasconcelos and A. G. D'Assunção, "Microstrip patch antennas with metamaterial inspired substrates and superstrates," Microwave & Optoelectronics Conference (IMOC), 2013 SBMO/IEEE MTT-S International, 2013.
  • [12]         S. Lamari, and R. Kubacki , "Frequency range widening of the microstrip antenna with the sierpinski fractal patterned metamaterial structure," Microwaves, Radar, and Wireless Communication (MIKON), 20th International Conference on, Gdansk, 2014.
01-12 Download
2

RFID Based Access Control System

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Palak Patel

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MLA : Patel, Palak."RFID Based Access Control System","International Journal of Recent Trends in Electronics and Communication" (2016).

APA : Patel, P. (2016)."RFID Based Access Control System","International Journal of Recent Trends in Electronics and Communication.

Chicago : Patel, Palak."RFID Based Access Control System","International Journal of Recent Trends in Electronics and Communication" (2016).

Radio Frequency Identification (RFID) based access control system is described in this paper. RFID cards are used for entry and exit of the employees in many organizations. Previously punch card system was very commonly used to get the time of entry and exit of employees. But it is manual system and it can be tempered. But with the use of RFID based technology there is no direct intervention of human being and the date and time of entry and exit is more accurate and the data can be easily collected via computer. The RFID system is designed using HID OEM 50 card reader and micro-controller. The user data from RFID card is accessed by micro-controller through card reader, after authentication, date & time stamping is done. The formatted data is transmitted to main server through GSM modem. After successful authentication, control signals are generated to stepper motor for opening of the gate. The RFID system is implemented using custom designed board with size of 10 cm x 5 cm and weight is 200 grams. The board consumes around 1 watt power.

RFID, Access Control System, Micro-controller, GSM Modem
  1. A. Juels, "RFID Security and Privacy: A Research Survey,"RSA Laboratories, 28 September 2005
  2. G Vinay Kumar  R.Raju, Santhosh Kumar “RFID and GSM Based ATM Money Transfer Prototype System”  , International Journal of Innovative Research in Computer and Communication Engineering, Vol. 3, Issue 11, pp. 13460-13464, November 2014
  3. Abdulshabaz, K. Mounika, B. Krishna, K.J.Arvind chary “Implementation of Embedded System Using RFID and Alcohol Sensor at the Toll Plaza”, International Journal of Innovative Research in Computer and Communication Engineering, Vol. 2, Issue 4, pp-4098-4103, April 2014
  4. John Ayoade, “Security implications in RFID and Authentication processing framework” , Computers & Security Volume 25, Issue 3, May 2006, Pages 207-212
  5. N. W. Lo and K.H. Yeh, "Novel RFID Authentication Schemes for Security Enhancement and System Efficiency," Lecture Notes in Computer Science, Secure Data Management, Vol. 4721/2007, pp. 203-212, 2007
  6. Sheng, Q.Z., Li, X. and Zeadally, S. (2008) “Enabling Next-Generation RFID Applications: Solutions and Challenges”, IEEE Computer, Vol 41 No 9, pp 21-28.
20-24 Download
3

Coexistence between Wi-Fi and WiMax

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Jagruti P Chandapara P Chandapara, Tushar P Dave

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MLA : Chandapara, Jagruti P Chandapara et al."Coexistence between Wi-Fi and WiMax","International Journal of Recent Trends in Electronics and Communication" (2016).

APA : Chandapara, J et al. (2016)."Coexistence between Wi-Fi and WiMax","International Journal of Recent Trends in Electronics and Communication.

Chicago : Chandapara, Jagruti P Chandapara et al."Coexistence between Wi-Fi and WiMax","International Journal of Recent Trends in Electronics and Communication" (2016).

Wireless networks are very popular nowadays. Wireless Local Area Network (WLAN) that uses the IEEE 802.11 standard and WiMAX (Worldwide Interoperability for Microwave Access) that uses the IEEE 802.16 standard are networks that we want to explore. WiMAX has been developed over 10 years, but it is still unknown to most people. However compared to WLAN, it has many advantages in transmission speed and coverage area. This paper will introduce these two technologies and make comparisons between WiMAX and WiFi. In addition, wireless network coexistence of WLAN and WiMAX will be explored through simulation. Lastly we want to discuss the future of WiMAX in relation to WiFi.

WiMax, Wi-Fi, Network simulation, Wireless coexistence
  1. Shuang Song and Biju Issac “ANALYSIS OF WIFI AND WIMAX AND WIRELESS NETWORK COEXISTENCE. “ International Journal of Computer Networks & Communications (IJCNC) Vol.6, No.6, November 2014
  2.  Ankur Sainy, Priti Bhalla. A Review: Vertical Handover between Wi-Fi and WiMAX. International journal of advanced research in computer science and software engineering. Volume 3, Issue 6, June 2013
  3.  Wonjun Lee,” Movement-Aware Vertical Handoff of WLAN and Mobile WiMAX for Seamless Ubiquitous Access”, IEEE Transactions on Consumer Electronics 0098 3063/07 © 2007 IEEE
  4.  Bushra Naeem,” Seamless Vertical Handover in Wi-Fi and WiMAX Networks using RSS and Motion Detection: An Investigation” The Pacific Journal of Science and Technology Volume 12. Number 1. May 2011 (spring)
  5.  Deep Kaur, Vishal Arora,” Research Agenda for Vertical Handover between WiMAX and Wi-Fi Networks” International Journal of Emerging Research in Management &Technology ISSN: 2278-9359 January 2013 [4]
  6. Jaeho Jo,” A Cross-layer Vertical Handover between Mobile WiMAX and 3G Networks”, 978-1-4244-2202-9/08© 2008 IEEE
  7.  Yu-Chang Chen,” Advanced seamless vertical handoff architecture for WiMAX and Wi-Fi heterogeneous networks with QoS guarantees” Y.-C. Chen et al. / Computer Communications 32 (2009) 281–293 [6]

 

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4

Design and Analysis of Active RFID Tag Antenna For UHF Band

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Vivek Varma, Hetal Vasava, Vaibhav Patel, Chintan Parmar, Dr. J M Rathod

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MLA : Varma, Vivek et al."Design and Analysis of Active RFID Tag Antenna For UHF Band","International Journal of Recent Trends in Electronics and Communication" (2016).

APA : Varma, V et al. (2016)."Design and Analysis of Active RFID Tag Antenna For UHF Band","International Journal of Recent Trends in Electronics and Communication.

Chicago : Varma, Vivek et al."Design and Analysis of Active RFID Tag Antenna For UHF Band","International Journal of Recent Trends in Electronics and Communication" (2016).

After doing the market survey we have came to the importance of Bandwidth (BW) in a Hi-Tech world and we decided to do further research on how BW can be enhanced of Active RFID tag Antenna for UHF band. The antenna is proposed in High-frequency simulator software (HFSS v.14) and the design consists of two parts First part that consist of stacked shorted patches and a ground plane with a slot in it and the second part is an active tag circuit mounted on the bottom of the antenna (i.e. ground). The simulated results are discussed in this paper as Operating BW is 101.6 MHz in frequency range from 860.1 to 961.7 MHz which covers almost whole RFID Technology band which is allotted in UHF band for, VSWR as 1.44 for the operating frequency 910 MHz and total Gain is 2.5dB

RFID, Patch Antenna, UHF Band, Active Tag Antenna, BW, HFSS
  1. N.C. Wu, M.A. Nystrom, T.R. Lin, H.C. Yu , “Challenges to global RFID adoption” N.C. Wu et al. / Technovation 26 (2006) 1317–1323
  2. Modern Antenna Handbook by Constantine  A.Balanis
  3. Anil kumar Patiland B.Suryakant “comparative analyses of enhancing bandwidth of micro strip patch antennas: a survey and an idea ”International Journal of Research in Engineering and Technology EISSN: 2319-1163 | pISSN: 2321-7308
  4. Roy Want, “An Introduction to RFID Technology”, IEEE Pervasive Computing, vol.5, no. 1, pp. 25-33, January-March 2006, doi:10.1109/MPRV.2006.2.
  5. W.J. Wu & Y.Z. Yin, “A Wideband Stacked Shorted Antenna for Miniaturized Active RFID  Tags”, Progress in Electromagnetics  Research ,Letters, Vol.17, 19-26, 2010
  6. HFSS Software Handbook by Ansoft Corporation.
  7. Jingxian Liu, Salman Naeem Khan, and Sailing He “The Effect of Shorting Post on Axe-shaped Circular Antenna Miniaturization ”PIERS Proceedings, Beijing, China, March 23–27, 2009
  8. Book by K. Siakavara “Methods to Design Microstrip Antennas for Modern Applications”.
33-38 Download
5

Compressive Sensing Based Image Reconstruction

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Sherin C Abraham, Ketki Pathak

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MLA : Abraham, Sherin et al."Compressive Sensing Based Image Reconstruction","International Journal of Recent Trends in Electronics and Communication" (2017).

APA : Abraham, S et al. (2017)."Compressive Sensing Based Image Reconstruction","International Journal of Recent Trends in Electronics and Communication.

Chicago : Abraham, Sherin et al."Compressive Sensing Based Image Reconstruction","International Journal of Recent Trends in Electronics and Communication" (2017).

Compressive sensing is a technique of image acquisition and reconstruction from a relatively fewer measurements than what the Nyquist theorem suggests; the sampling rate must be greater than twice the highest frequency in the signal for fidelity of image reconstruction. Compressive sensing is applicable when the signals under consideration are sparse. Two-dimensional discrete wavelet transform is applied for sparse representation of an image in this thesis. When sparsity is more, the performance of compressive sensing image reconstruction algorithm will be better. The sparse level of low frequency sub bands and high frequency sub bands are different. Two different compressive sensing measurement matrixes and recovery algorithms are used for the low-frequency sub bands and high-frequency sub bands for better results.

Medical field especially in MRI scanning, compressive sensing can be utilized for less scanning time, thus benefits patients. The reconstructed image will be better in both PSNR and visual quality

Compressive Sensing, Wavelet Transform, Discrete Cosine Transform, Sparsity, MRI
  1. Chenwei Deng, Weisi Lin, Bu-sung Lee, and Chiew Tong Lau, "Robust Image Coding Based Upon Compressive Sensing”, IEEE Transactions on Multimedia, vol. 14, no.2, April 2014.
  2. Xiumeni Li and Guoan Bi, “Image reconstruction based on the improved compressive sensing algorithm”, IEEE International Conference on Digital Signal Processing (DSP), 2015
  3. Weisheng Dong, Xiaolin Wu, and Guangming Shi, "Sparsity Fine Tuning in Wavelet Domain with Application to Compressive Image Reconstruction”, IEEE Transactions on Image Processing, vol. 23, no.12, December 2014.
  4. Muhammad Ali Qureshi and M. Deriche, “A new wavelet based efficient image compression algorithm using compressive sensing”, Springer Science Multimedia tools and applications, March 2015
  5. Michael Lustig and et.al, “Compressed sensing MRI”, IEEE signal processing magazine, March, 2008
  6. SabbisettiRavindranath and et. al, “Compressive Sensing based Image acquisition and Reconstruction analysis” Green Computing Communication and   Electrical Engineering (ICGCCEE), 2014 International Conference.
  7. Chen Chen and Junzhou Huang, “Exploiting the wavelet structure in compressed sensing MRI”, Science Direct Magnetic Resonance Imaging, July 2014.
  8. SaadQaisar and et.al, “Compressive sensing: From theory to applications, a survey”, IEEE Journal of communications and networks, vol.15, no.5, October 2013
  9. Emmanuel J. Candès and Michael B. Wakin, “An introduction to compressive sensing”, IEEE Signal Processing Magazine, March 2008
  10. S. Spurthi and ParnasreeChakraborty, “Block based compressed sensing algorithm for medical image compression”, International Journal of Engineering and Computer Science, vol.   05, issue 5, May 2016 
  11. SumitBudhiraja and DiptiBhatnagar, “Wavelet based compressive sensing techniques for image compression”, International journal of Engineering Research and Applications, 2011.
  12. Dr. G Vijay Kumar, “Fast compressed sensing based high resolution image reconstruction”, International Journal of New Technology and Research, vol. 2, Issue 3, March 2016
  13. JieXu and et.al, “Improved total variation minimization method for compressive sensing by intra-prediction”, Science direct, Signal processing, 2012
  14. Wonseok Kang and et.al, “Compressive sensing-based image de-noising using adaptive multiple sampling and optimal error tolerance”, IEEE International Conference on Acoustics, Speech and Signal Processing, 2013
  15. Quisong Wu and et.al, “Multi-task Bayesian compressive sensing exploiting intra-task dependency”, IEEE signal processing letters, 2013

Website:

  1. http://dsp.rice.edu/sites/dsp.rice.edu/files/cs/baraniukCSlecture07.pdf
  2. http://dsp.rice.edu/cs
  3. https://en.wikipedia.org/wiki/Compressed_sensing
  4. Civil Hospital, Surat
  5. https://www.ncm-c.org/services/diagnostic-imaging/magnetic-resonance-imaging-mri/
  6. http://www.healthhype.com/diagnostic-imaging-of-the-abdomen-x-ray-ultrasound-ct-mri.html

 

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