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Dissertations / Theses on the topic 'Multirate filter banks'

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1

Chen, Tsuhan Vaidyanathan P. P. Vaidyanathan P. P. "Multidimensional multirate filters and filter banks : theory, design, and implementation /." Diss., Pasadena, Calif. : California Institute of Technology, 1993. http://resolver.caltech.edu/CaltechETD:etd-08232007-095226.

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2

Steffen, Andreas. "Digital pulse compression using multirate filter banks /." [S.l.] : [s.n.], 1991. http://e-collection.ethbib.ethz.ch/show?type=diss&nr=9471.

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3

Tay, David B. H. "Multidimensional multirate filter banks : some theory and design." Thesis, University of Cambridge, 1993. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.319581.

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4

Baicher, Gurvinder Singh. "Towards optimisation of digital filters and multirate filter banks through genetic algorithms." Thesis, University of South Wales, 2003. https://pure.southwales.ac.uk/en/studentthesis/towards-optimisation-of-digital-filters-and-multirate-filter-banks-through-genetic-algorithms(1ed2778b-e27b-4434-bc50-915f697a0d6b).html.

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This thesis is concerned with the issues of design and optimisation of digital filters and multirate filter banks. The main focus and contribution of this thesis is to apply the genetic algorithm (GA) technique and to draw some comparison with the standard gradient and non-gradient based optimisation methods. The finite word length (FWL) constraint affects the accuracy of a real-time digital filter requency response. For the case of digital filters, this study is concerned with the optimisation of FWL coefficients using genetic algorithms. Some comparative study with the simple hill climber al
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Tuqan, Jamal Vaidyanathan P. P. "Statistical optimization of multirate systems and orthonormal filter banks /." Diss., Pasadena, Calif. : California Institute of Technology, 1998. http://resolver.caltech.edu/CaltechETD:etd-02042008-081232.

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6

Chen, Ying-Jui 1972. "Wavelets and multirate filter banks : theory, structure, design, and applications." Thesis, Massachusetts Institute of Technology, 2004. http://hdl.handle.net/1721.1/30140.

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Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering, 2004.<br>Includes bibliographical references (p. 219-230) and index.<br>Wavelets and filter banks have revolutionized signal processing with their ability to process data at multiple temporal and spatial resolutions. Fundamentally, continuous-time wavelets are governed by discrete-time filter banks with properties such as perfect reconstruction, linear phase and regularity. In this thesis, we study multi-channel filter bank factorization and parameterization strategies, which facilitate design
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7

Mirabbasi, Shahriar. "On the design of multirate filter banks by H¦0¦0 optimization." Thesis, National Library of Canada = Bibliothèque nationale du Canada, 1997. http://www.collectionscanada.ca/obj/s4/f2/dsk2/ftp01/MQ28849.pdf.

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8

Lu, Chung-Kuei. "Design and VLSI implementation of multirate filter banks based on approximately linear phase allpass sections." Thesis, University of Warwick, 1998. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.267049.

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9

Nguyen, Truong Quang Vaidyanathan P. P. "Design and implementation of linear-phase and/or pairwise-symmetric perfect-reconstruction fir multirate filter banks /." Diss., Pasadena, Calif. : California Institute of Technology, 1989. http://resolver.caltech.edu/CaltechETD:etd-11102005-091115.

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10

Bamberger, Roberto Hugo. "The directional filter bank : a multirate filter bank for the directional decomposition of images." Diss., Georgia Institute of Technology, 1990. http://hdl.handle.net/1853/15346.

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11

Li, Min. "Induced norm optimal multirate filter bank design using LMI constraints /." View Abstract or Full-Text, 2002. http://library.ust.hk/cgi/db/thesis.pl?ELEC%202002%20LI.

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Thesis (M. Phil.)--Hong Kong University of Science and Technology, 2002.<br>Includes bibliographical references (leaves 55-58). Also available in electronic version. Access restricted to campus users.
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12

Eghbali, Amir. "On Filter Bank Based MIMO Frequency Multiplexing and Demultiplexing." Thesis, Linköping University, Department of Electrical Engineering, 2006. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-7569.

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<p>The next generation satellite communication networks will provide multimedia services supporting high bit rate, mobility, ATM, and TCP/IP. In these cases, the satellite technology will act as the internetwork infrastructure of future global systems and assuming a global wireless system, no distinctions will exist between terrestrial and satellite communications systems, as well as between fixed and 3G mobile networks. In order for satellites to be successful, they must handle bursty traffic from users and provide services compatible with existing ISDN infrastructure, narrowcasting/multicast
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13

Nayebi, Kambiz. "A time domain framework for the analysis and design of FIR multirate filter bank systems." Diss., Georgia Institute of Technology, 1990. http://hdl.handle.net/1853/13867.

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14

Dallmeyer, Matthew John. "Reducing Fir Filter Costs: A Review of Approaches as Applied to Massive Fir Filter Arrays." University of Dayton / OhioLINK, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=dayton1417544448.

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15

Chen, Tsuhan. "Multidimensional multirate filters and filter banks : theory, design, and implementation." Thesis, 1993. https://thesis.library.caltech.edu/3207/1/Chen_t_1993.pdf.

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Multidimensional (MD) multirate systems, which find applications in the coding and compression of image and video data, and in high definition television (HDTV) systems, have recently attracted much attention. Central to these systems is the idea of sampling lattices. The basic building blocks in an MD multirate system are the decimation matrix M, the expansion matrix L, and MD digital filters. When M and L are diagonal, most of the one-dimensional (1D) multirate results can be extended automatically, using separable approaches (i.e., separate operations in each dimension). Separable approache
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16

Abdel-Raheem, Esam Mostafa M. "Design and VLSI implementation of multirate filter banks." Thesis, 1995. http://hdl.handle.net/1828/5962.

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17

Chang, Dah-Chung, and 張大中. "Adaptive Reconstruction Filter Banks for Multirate Signal Processing." Thesis, 1998. http://ndltd.ncl.edu.tw/handle/16086022904712232277.

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博士<br>國立交通大學<br>電信工程研究所<br>86<br>The conventional reconstruction filter banks are designedto satisfy the perfect reconstruction property. Most designs assumethat subband signals are free of distortions. However, in practicalapplications, this assumption is often not valid. For example,subband signals may be distorted by additive noise due to quantization,by channel due to transmission, or by filters due to signal processing.In such cases, conventional designs cannot yield satisfactory resul
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18

Huang, Shi Jie, and 黃仕杰. "Design of uniform and nonuniform multirate filter banks." Thesis, 1995. http://ndltd.ncl.edu.tw/handle/92370516172788447072.

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19

Tuqan, Jamal. "Statistical optimization of multirate systems and orthonormal filter banks." Thesis, 1998. https://thesis.library.caltech.edu/492/1/Tuqan_j_1998.pdf.

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The design of multirate systems and/or filter banks adapted to the input signal statistics is a generic problem that arises naturally in variety of communications and signal processing applications. The two main applications we have in mind are the statistical optimization of subband coders for signal compression and the multirate modeling of WSS random processes. These two applications lead naturally to the important concepts of energy compaction filters and principal component filter banks. In this thesis, we study three problems that are directly related to the above mentioned applications.
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20

Koilpillai, Ravinder David. "Design issues in multirate digital filter banks, including transmultiplexers." Thesis, 1991. https://thesis.library.caltech.edu/2741/1/Koilpillai_rd_1991.pdf.

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NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in .pdf document. Several aspects of the theory and design of FIR digital filter banks for analysis/synthesis systems are studied in this thesis. In particular, we focus on filter banks satisfying the perfect reconstruction (PR) property. We present a new approach to design PR filter banks wherein the filter bank is obtained by cosine-modulation of a linear-phase prototype filter of length N = 2mM, m [...] 1 (where M is the number of channels). The PR property is satisfied because the polyphase
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21

Xu, Hua. "Efficient design methods for multirate filter banks and their applications." Thesis, 1995. http://hdl.handle.net/1828/6184.

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22

Hung, Wei-Che, and 洪偉哲. "Design of Multirate Filter Banks by H2 and H∞ Optimization." Thesis, 2001. http://ndltd.ncl.edu.tw/handle/36393782022259158662.

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碩士<br>國立成功大學<br>工程科學系<br>89<br>The thesis presents an optimal design problem of M-channel maximally decimated filter banks, commonly called quadrature mirror filter (QMF) banks. Based on the analysis filters of filter bank have been designed according to some criteria, finite-impulse response (FIR) synthesis filter banks are then synthesized by using H∞, H2 and mixed H2/H∞ optimization techniques. For arbitrary analysis filter banks, standard state-space H∞ techniques can be employed to obtain numerical solutions of high-order infinite-impulse response (IIR) synthesis filter banks. But in pra
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23

Chang, Shih-Min, and 張世民. "Design of Uniform and Nonuniform Multirate Filter Banks with Low-delay Property." Thesis, 2000. http://ndltd.ncl.edu.tw/handle/91786177469702288078.

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碩士<br>國立臺灣大學<br>電信工程學研究所<br>88<br>Recently, in consequence of wide use of digital signal processing day by day, ther are more and more researches concern about digital filter and digital filter bank, in the thesis , we focus on quadrature mirror filter banks(QMF banks) and non-uniform filter banks(NDF banks), a systematic algorithm is proposed to design them based on various criteria, among them, we use interior algorithm ( DAS Karmarkar’s algorithm) to make the process of optimization of entire designing more efficient , and performance of des- igning result as better as possible.
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24

Nguyen, Truong Quang. "Design and implementation of linear-phase and/or pairwise-symmetric perfect-reconstruction FIR multirate filter banks." Thesis, 1989. https://thesis.library.caltech.edu/4488/1/Nguyen_tq_1989.pdf.

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This thesis studies the structures, design procedures and implementations of FIR perfect-reconstruction digital filter banks. The first part of the thesis deals with the structures and the design procedures of the perfect-reconstruction filter banks where the polyphase transfer matrices are lossless. These structures are parameterized by a set of rotation angles [37]. The usual procedure is to blindly optimize these angles to minimize an objective function where the objective function consists of all the stopband energies of the filters which we would like to design. This procedure is very tim
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25

Liu, SingHou, and 劉幸和. "An Optimal Signal Reconstruction in Noisy Filter Bank System : Multirate Kalman Filtering Approach." Thesis, 1993. http://ndltd.ncl.edu.tw/handle/41210336215636000103.

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碩士<br>國立清華大學<br>電機工程研究所<br>81<br>In this paper, an optimal noise cancellation pr- ocedure is equipped in analysis/synthesis filter bank systems to achieve optimal signal reconstruc- tion under subband noise. Based on an equivalent block representation of subband signals, a state- space model is introduced for the M-band filter bank systems with subband noises. The composite effect of the input signals, analysis filter bank and decimators are represented by a multirate st- ate-space model, a
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26

Lin, Hsin-Yuan, and 林欣垣. "FFT-Based Multirate Signal Processing for Low Complexity 18-Band Quasi-ANSI S1.11 1/3-Octave Filter Bank." Thesis, 2017. http://ndltd.ncl.edu.tw/handle/x2x4qn.

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碩士<br>國立交通大學<br>電子研究所<br>106<br>When using filter bank to analyze signal, multiplication dominate most of computation complexity, it has an impact on dynamic power. In this thesis, instead of using linear convolution in time domain to analyze signal, we use circular convolution in frequency domain to implement filter bank. In this way, the computation complexity would be considerably reduced. However, it would not have obviously decreasing of the number of multiplication, if we using traditional fast fourier transform.。In this application, due to the input signal is real, we exploit real fast
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