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Millimeter-Wave Communication Systems : Network Analysis and Hybrid Precoding Design / by Kai Yang, Minwei Shi, Hang Yuan, Zhitong Ni

By: Yang, Kai, autor
Contributor(s): Shi, Minwei, autor | Yuan, Hang, autor | Ni, Zhitong, autor
Material type: materialTypeLabelE-bookPublisher: Singapore : Springer International Publishing, 2022Edition: First edition 2022.Description: 1 recurso en línea (XII, 176 páginas) : 57 ilustraciones, 56 ilustraciones a color.ISBN: 9789811696213.Subject: Ondas electromagnéticas -- Propagación | Sistemas de comunicación inalámbricos | Redes de banda anchaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
1.Introduction -- 2.Decoupled Heterogeneous Networks with mmWave Small Cells -- 3.Performance Analysis of mmWave Cellular Networks with Hotspot -- 4.Fine-Grained Analysis of Clustered mmWave Networks -- 5.Hybrid Subarrays Based Angle-of-Arrivals Estimation for Millimeter-wave Systems -- 6.Hybrid Precoder Design with Minimum-Subspace-Distortion Quantization in Multiuser mmWave Communications -- 7.Hybrid Precoding for Wideband Multiuser Millimeter-wave Systems -- 8.Hybrid Precoding Towards Higher Frequency Systems -- 9.Summary and Discussion.
Summary: This book investigates the analytical framework and hybrid precoding scheme in millimeter-wave networks. Millimeter-wave communication is a frontier technology for supporting ultra-high data rate transmissions in future wireless networks due to larger bandwidth and higher spectral efficiency. However, the involved interference characterization and increased energy consumption are two dominant limitations in millimeter-wave network evolution. In this monograph, we develop a unified analytical framework for large-scale millimeter-wave communication networks, which leads to abundant network design insights and guidelines. Under this framework, we design low-complexity hybrid precoding algorithms for millimeter-wave systems, which greatly reduce energy consumption without obvious performance degradation. We would like to highlight that we develop a unified analytical framework and low-complexity hybrid precoding mechanisms for millimeter-wave communication networks, where a variety of millimeter-wave properties and hardware constraints are incorporated. The developed mechanisms can provide abundant insights and guidelines for the hybrid precoding design and analysis in millimeter-wave communication networks. Graduate students, researchers, and engineers in the field of communication networks can benefit from the book.
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TK5103.4835 2022 EB (Browse shelf(Opens below)) Acceso electrónico eBook.01042406
Total holds: 0

1.Introduction -- 2.Decoupled Heterogeneous Networks with mmWave Small Cells -- 3.Performance Analysis of mmWave Cellular Networks with Hotspot -- 4.Fine-Grained Analysis of Clustered mmWave Networks -- 5.Hybrid Subarrays Based Angle-of-Arrivals Estimation for Millimeter-wave Systems -- 6.Hybrid Precoder Design with Minimum-Subspace-Distortion Quantization in Multiuser mmWave Communications -- 7.Hybrid Precoding for Wideband Multiuser Millimeter-wave Systems -- 8.Hybrid Precoding Towards Higher Frequency Systems -- 9.Summary and Discussion.

This book investigates the analytical framework and hybrid precoding scheme in millimeter-wave networks. Millimeter-wave communication is a frontier technology for supporting ultra-high data rate transmissions in future wireless networks due to larger bandwidth and higher spectral efficiency. However, the involved interference characterization and increased energy consumption are two dominant limitations in millimeter-wave network evolution. In this monograph, we develop a unified analytical framework for large-scale millimeter-wave communication networks, which leads to abundant network design insights and guidelines. Under this framework, we design low-complexity hybrid precoding algorithms for millimeter-wave systems, which greatly reduce energy consumption without obvious performance degradation. We would like to highlight that we develop a unified analytical framework and low-complexity hybrid precoding mechanisms for millimeter-wave communication networks, where a variety of millimeter-wave properties and hardware constraints are incorporated. The developed mechanisms can provide abundant insights and guidelines for the hybrid precoding design and analysis in millimeter-wave communication networks. Graduate students, researchers, and engineers in the field of communication networks can benefit from the book.

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