Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.
Optimum design can improve signal direction, interference, and noise suppression across various disciplines that utilize waveforms, including radar, sonar, and communications. Waveform Diversity explains the role of transmitter and receiver waveform design to boost overall performance. Written by experts in the field, this monograph covers joint transmitter receiver design, optimum design methods, constant envelope transmit signals, and sparsity-based receivers. Proven methods for mitigating noise and clutter and maximizing output signal power are included in this practical guide.
Waveform Diversity covers:
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
S. Unnikrishna Pillai is a Professor of Electrical and Computer Engineering at Polytechnic Institute of NYU. His research interests include radar signal processing, blind identification, spectrum estimation, data recovery, and waveform diversity. Dr. Pillai is the coauthor of Space Based Radar.
Ke Yong Li is a senior engineer at C & P Technolliges, Inc. His areas of research include space-time adaptive processing (STAP), waveform diversity, and radar signal processing. Li is the coauthor of Space Based Radar.
Ivan Selesnick is an Associate Professor of Electrical and Computer engineering at Polytechnic Institute of NYU. His current research interests are in the areas of digital signal and image processing, wavelet and sparsity based methods for signal restoration, and biomedical signal processing.
Braham Himed is a Principal Electronics Engineer at the U.S. Air Force Research Laboratory, Radar Signal Processing Branch, Sensors Directorate. His research interests include radar signal processing, detection, estimation, multichannel adaptive processing, time series analysis, and array processing. Himed is the coauthor of Space Based Radar.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Etat : New. This first book of its kind teaches practical techniques for taking full advantage of the emerging communications engineering trend of waveform diversity.Cutting-edge transmitter and receiver waveform design techniquesOptimum design can . N° de réf. du vendeur 5887587
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Buch. Etat : Neu. Neuware - Cutting-edge transmitter and receiver waveform design techniquesOptimum design can improve signal direction, interference, and noise suppression across various disciplines that utilize waveforms, including radar, sonar, and communications. Waveform Diversity explains the role of transmitter and receiver waveform design to boost overall performance. Written by experts in the field, this monograph covers joint transmitter receiver design, optimum design methods, constant envelope transmit signals, and sparsity-based receivers. Proven methods for mitigating noise and clutter and maximizing output signal power are included in this practical guide.Waveform Diversity covers:Waveform design and matched filteringNew methods for optimum transmitter and receiver designTransmitter threshold energy and energy-bandwidth tradeoffIncreasing transmit power efficiency with constant envelope transmit signalsOptimum waveform design to reduce noise and clutterDiscrete-time waveform designSparsity-based receiver design methods. N° de réf. du vendeur 9780071622899
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Hardcover. Etat : new. Hardcover. Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.Cutting-edge transmitter and receiver waveform design techniquesOptimum design can improve signal direction, interference, and noise suppression across various disciplines that utilize waveforms, including radar, sonar, and communications. Waveform Diversity explains the role of transmitter and receiver waveform design to boost overall performance. Written by experts in the field, this monograph covers joint transmitter receiver design, optimum design methods, constant envelope transmit signals, and sparsity-based receivers. Proven methods for mitigating noise and clutter and maximizing output signal power are included in this practical guide.Waveform Diversity covers:Waveform design and matched filteringNew methods for optimum transmitter and receiver designTransmitter threshold energy and energy-bandwidth tradeoffIncreasing transmit power efficiency with constant envelope transmit signalsOptimum waveform design to reduce noise and clutterDiscrete-time waveform designSparsity-based receiver design methods This first book of its kind teaches practical techniques for taking full advantage of the emerging communications engineering trend of waveform diversity. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. N° de réf. du vendeur 9780071622899
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