A Digital Phase Locked Loop based Signal and Symbol Recovery System for Wireless Channel
(Sprache: Englisch)
The book reports two approaches of implementation of the essential components of a Digital Phase Locked Loop based system for dealing with wireless channels showing Nakagami-m fading. It is mostly observed in mobile communication. In the first approach, the...
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Klappentext zu „A Digital Phase Locked Loop based Signal and Symbol Recovery System for Wireless Channel “
The book reports two approaches of implementation of the essential components of a Digital Phase Locked Loop based system for dealing with wireless channels showing Nakagami-m fading. It is mostly observed in mobile communication. In the first approach, the structure of a Digital phase locked loop (DPLL) based on Zero Crossing (ZC) algorithm is proposed. In a modified form, the structure of a DPLL based systems for dealing with Nakagami-m fading based on Least Square Polynomial Fitting Filter is proposed, which operates at moderate sampling frequencies. A sixth order Least Square Polynomial Fitting (LSPF) block and Roots Approximator (RA) for better phase-frequency detection has been implemented as a replacement of Phase Frequency Detector (PFD) and Loop Filter (LF) of a traditional DPLL, which has helped to attain optimum performance of DPLL. The results of simulation of the proposed DPLL with Nakagami-m fading and QPSK modulation is discussed in detail which shows that the proposed method provides better performance than existing systems of similar type.
Inhaltsverzeichnis zu „A Digital Phase Locked Loop based Signal and Symbol Recovery System for Wireless Channel “
Introduction.- Transmitter Receiver Techniques.- Modulation Techniques and Signal Processing.- Basic Considerations of PLL and Its Types.- Digital Phased Locked Loop.- Synchronization.- A Zero Crossing Algorithm based Digital Phase Locked Loop.- Least Square Polynomial Fitting based Digital Phase Locked Loop.- A DPLL based Recovery System for Nakagami-m Fading Channel.- Coding Assisted Carrier and Symbol Recovery using DPLL.- Carrier Phase Detection of Rayleigh and Rician Faded Signals using Digital Phase Locked Loop.- DPLL based Square Loop for Carrier Synchronization over Fading Channel.- Conclusions and Future Direction.Autoren-Porträt von Basab Bijoy Purkayastha, Kandarpa Kumar Sarma
Mr. Basab Bijoy Purkayastha is currently working as Technical Superintendent in the Department of Physics, Indian Institute of Technology Guwahati, India. He has completed MSc in Electronics Science from Gauhati University, India in 2002. He also completed M Tech from the same institution in 2012 with specialization in Mobile Communication and DPLL based Design. He has around 10 research papers published in international conference proceedings and journals.Dr. Kandarpa Kumar Sarma, currently Assistant Professor in Department of Electronics and Communication Technology, Gauhati University, has 15 years of professional experience. He obtained MTech degree in Signal Processing from Indian Institute of Technology Guwahati in 2005 and subsequently completed PhD programme in the area of Soft-Computational Application in Mobile Communication. In his teaching, he has covered all areas of UG/PG level Electronics courses including Soft-computing, Mobile Communication, Digital Signal and Image Processing, etc. He has authored five books, 10 book chapters, 89 peer-reviewed journal articles and 132 conference proceedings papers. His areas of interest are Soft-Computation and its applications, Mobile Communication, Antenna Design, Speech Processing, Document Image Analysis and Signal Processing applications in High Energy Physics, Neuro-computing and Computational Models for Social-Science Applications. He is a senior member of IEEE (USA), Life Member of IETE (India), Life Member of ISTE (India) and Life Member of CSI.
Bibliographische Angaben
- Autoren: Basab Bijoy Purkayastha , Kandarpa Kumar Sarma
- 2015, 2015, XXI, 244 Seiten, Maße: 16 x 24,1 cm, Gebunden, Englisch
- Verlag: Springer, Berlin
- ISBN-10: 8132220404
- ISBN-13: 9788132220404
- Erscheinungsdatum: 17.02.2015
Sprache:
Englisch
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