Last edited by Moogule
Monday, August 17, 2020 | History

6 edition of Designing Space-Time Codes Using Orthogonal Designs found in the catalog.

Designing Space-Time Codes Using Orthogonal Designs

by Girish Ganesan

  • 135 Want to read
  • 4 Currently reading

Published by Uppsala Universitet .
Written in English

    Subjects:
  • Science/Mathematics,
  • Technology,
  • Engineering - Electrical & Electronic

  • Edition Notes

    SeriesUppsala Dissertations from the Faculty of Science & Technology, 41
    The Physical Object
    FormatPaperback
    Number of Pages151
    ID Numbers
    Open LibraryOL9121600M
    ISBN 109155453694
    ISBN 109789155453695

      () Cokriging-Based Sequential Design Strategies Using Fast Cross-Validation Techniques for Multi-Fidelity Computer Codes. Technometrics , () Comparison of two stochastic techniques for reliable urban runoff prediction by modeling systematic by: % This file was created with JabRef % Encoding: Cp @ARTICLE{NeedellTropp, author = {D. Needell and J.A. Tropp}, title = {{CoSaMP}: Iterative signal recovery from inco.

    X. Ma and G. B. Giannakis, "Space-Time-Multipath Coding using Digital Phase Sweeping or Block Circular Delay Diversity," IEEE Transactions on Signal Processing, vol. . Summary of important results Problems Orthogonal space-time block codes Introduction Alamouti code Maximum-likelihood decoding and maximum ratio combining Real orthogonal designs Generalized real orthogonal designs Complex orthogonal designs Generalized complex orthogonal designs Pseudo-orthogonal space.

    The space-time block codes are the higher version of the Alamouti scheme. i.e, increment of the number of antennas of the Alamouti scheme, the space-time block codes will result. As an example of the STBC’s, a case of 4 transmitted antennas and one receive antenna is explained here. unitary differential space time codes - Free download as PDF File .pdf), Text File .txt) or read online for free. Scribd is the world's largest social reading and publishing site. Search Search.


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Designing Space-Time Codes Using Orthogonal Designs by Girish Ganesan Download PDF EPUB FB2

Additional Physical Format: Online version: Ganesan, Girish. Designing space-time codes using orthogonal designs. Uppsala: Acta Universitatis Upsaliensis, Class of Full-Rank Space-Time Codes Combining Orthogonal Designs With Delay Diversity Article in IEEE Transactions on Vehicular Technology 57(1) - February with 14 Reads.

Research work of Su and Xia [4] presents a detailed discussion of space-time block codes from complex orthogonal designs for achieving high data rates using QAM signals in wireless communications.

A final remark: because space-time codes do not require the channel knowledge at the transmitter, they should be designed in such a way that their performance is not too sensitive to the actual channel state (at any time instant). Designing robust space-time codes is a topic in itself which is dealt with extensively in Chapters 8 and 9.

Space-Time Coding: Theory and Practice Covering the fundamental principles of space-time coding for wireless communications over multiple-input multiple-output channels, this book sets out practical coding methods for achieving the performance improvements predicted by the theory.

A complex orthogonal design (COD) used in space-time block codes is a kind of combinatorial design. It has been well studied because it Designing Space-Time Codes Using Orthogonal Designs book a fast maximum-likelihood decoding algorithm and achieves full diversity.

When designing CODs, there are seven characteristics that should be considered, which include code rate, decoding delay, transceiver signal linearization, peak-to-average power ratio. The various chapters of this book provide an essential, complete and refreshing insight into the performance behaviour of space-time codes in realistic scenarios and constitute an ideal source of the latest developments in MIMO propagation and space-time coding for researchers, R&D engineers and graduate students.

In this paper, we propose a range reconstruction method for a frequency-band shared multiple-input multiple-output (MIMO) orthogonal frequency-division multiplexing (OFDM) radar with sufficient cyclic prefix (CP) by using real orthogonal designs.

Compared with the application of complex orthogonal designs in our previous work, the application of real orthogonal designs can significantly reduce Cited by: 4.

code constellations is proposed inspired from orthogonal designs and pre-coded space time block codes generalized partly orthogonal designs or generalized POD. Then we design the quantize for the erroneous feedback channel and the pre-coder codebook of PODs based on this criterion.

The. Spatial Multiplexing: In spatial multiplexing, each spatial channel carries independent information, there by increasing the data rate of the can be compared to Orthogonal Frequency Division Multiplexing (OFDM) technique, where, different frequency subchannels carry different parts of the modulated data.

But in spatial multiplexing, if the scattering by the environment is. Space-time codes for high data rate wireless communication: performance criterion and code construction.

IEEE Transactions on Information Theory, 44 (2)–, March Author: Jerry R. Hampton. This work was supported in part by the U.S. National Science Foundation (NSF) under grants CCR and CCR, and in part by the U.S. Office of Navel Research (ONR) under grant NAuthor: Ben Lu, Xiaodong Wang.

Quasi-orthogonal space-time block codes; 6. Space-time trellis codes; 7. Super-orthogonal space-time trellis codes; 8. Differential space-time modulation; 9. Spatial multiplexing and receiver design; Non-orthogonal space-time block codes; Additional topics in space-time coding.

pp illustrations 61 exercises 0 File Size: 6MB. The book includes reviews, actual designs, research works, discussion and experimental results related to works in the areas of communication, computation, vision sciences, bio-inspired system design, social dynamic, related process design, etc.

Interference Cancellation Using Quasi-Orthogonal Space-Time Block Coding. Interference. QUASI-ORTHOGONAL SPACE-TIME BLOCK (Communications and Signal Processing) (Communications and Signal Porcessing) Chau Yuen Quasi-Orthogonal Space-Time Block Code presents an up-to-date, comprehensive and in-depth discussion of an important emerging class of space-time codes, called the Quasi-Orthogonal STBC (QO-STBC).

Christos Koukouvinos and Jennifer Seberry, Orthogonal designs of Kharaghani type; II, Ars Combinatoria, 72, () Chung Le Tran, Jennifer Seberry, Yejing Wang, Beata J Wysocki, Tad A Wysocki, Tianbing Xia and Ying Zhao, Two new complex orthogonal space-time block codes for 8 transmit antennas, Electronics Letters, 55, () Tarokh V, Jafarkani H, Calderbank AR () Space-time block codes from orthogonal designs.

IEEE Trans Inform Theory 45(5)– zbMATH CrossRef MathSciNet Google Scholar Author: Ivan Djordjevic, William Ryan, Bane Vasic. Quasi-orthogonal space-time block codes with full diversity Weifeng Su ; Xiang-Gen Xia Proc.

SPIEAdvanced Signal Processing Algorithms, Architectures, and Implementations XII, pg (6 December ); doi: / تحميل ():: construction of ldpc codes using randomly permutated copies of parity check matrixرسالة ماجستير بعنوان تحميل ():: Coverage & CapaCity improvements in the g Cellular network By parameter anD network moDiFiCation رسالة ماجستير بعنوان.

Covering the full range of channel codes from the most conventional through to the most advanced, the second edition of Turbo Coding, Turbo Equalisation and Space-Time Coding. is a self-contained reference on channel coding for wireless channels.

The book commences with a historical perspective on the topic, which leads to two basic component codes, convolutional and block codes. In this correspondence, we show that the exact number of spatial degrees of freedom (DOF) for a two user nondegenerate (full rank channel matrices) multiple-input-multiple-output (MIMO) Gaussian interference channel with M1, M2 antennas at transmitters 1, 2 and N1, N2 antennas at the corresponding receivers, and perfect channel knowledge at all transmitters and receivers, is min{M1 + Cited by: Creating a radar datacube for single or multiple targets This program creates a radar datacube using functions from the PhasedArray System Toolbox.

This program shows 2 examples: 1- A radar datacube with a single target, an 8 element uniform linear array, samples per radar pulse, and 32 pulses 2- A radar datacube with 20 targets, a element array mounted on the surface of a sphere.Home Biography Research Teaching Publications.

Book Chapters: Z. Xiong, ``Distributed video coding," Multimedia Image and Video Processing, L. Guan,and S.-Y.