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Architectures for Baseband Signal Processing [electronic resource] / by Frank Kienle.

By: Contributor(s): Material type: TextTextPublisher: New York, NY : Springer New York : Imprint: Springer, 2014Description: XVIII, 260 p. 149 illus., 67 illus. in color. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781461480303
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 621.3815 23
LOC classification:
  • TK7888.4
Online resources:
Contents:
Introduction -- Digital Transmission System -- Channel Coding Basics -- Hardware Design of Individual Components -- Turbo Codes -- Low-Density Parity Check Codes -- Bit-Interleaved Coded MIMO System -- Comparing Architectures.
In: Springer eBooksSummary: This book addresses readers in electrical engineering, computer engineering, and computer science with an interest in the field of communications engineering, architectures, and microelectronic design. The focus is on implementation aspects and implementation constraints of individual components that are needed in transceivers for current standards, such as UMTS, LTE, WiMAX and DVB-S2. The application domain is the so called outer receiver, which comprises the channel coding, interleaving stages, modulator, and multiple antenna transmission. Throughout the book, the focus is on advanced algorithms that are actually in use in modern communications systems. Their basic principles are always derived with a focus on the resulting communications and implementation performance.  As a result, this book serves as a valuable reference for two, typically disparate audiences in communication systems and hardware design.  It addresses challenges faced by both the algorithm designer and the chip designer, who need to deal with the ongoing increase of algorithmic complexity and required data throughput for today’s mobile applications.   • Enables algorithm designers and chip designers to meet challenges posed by the ongoing increase of algorithmic complexity and required data throughput for today’s mobile applications; • Describes techniques for improved utilization of the bandwidth, as well as maximizing area and power profile to reduce fabrication costs; • Focuses on advanced algorithms that are actually in use in modern communications systems.
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Item type Current library Call number Status Date due Barcode
E-Book E-Book Central Library Available E-40133

Introduction -- Digital Transmission System -- Channel Coding Basics -- Hardware Design of Individual Components -- Turbo Codes -- Low-Density Parity Check Codes -- Bit-Interleaved Coded MIMO System -- Comparing Architectures.

This book addresses readers in electrical engineering, computer engineering, and computer science with an interest in the field of communications engineering, architectures, and microelectronic design. The focus is on implementation aspects and implementation constraints of individual components that are needed in transceivers for current standards, such as UMTS, LTE, WiMAX and DVB-S2. The application domain is the so called outer receiver, which comprises the channel coding, interleaving stages, modulator, and multiple antenna transmission. Throughout the book, the focus is on advanced algorithms that are actually in use in modern communications systems. Their basic principles are always derived with a focus on the resulting communications and implementation performance.  As a result, this book serves as a valuable reference for two, typically disparate audiences in communication systems and hardware design.  It addresses challenges faced by both the algorithm designer and the chip designer, who need to deal with the ongoing increase of algorithmic complexity and required data throughput for today’s mobile applications.   • Enables algorithm designers and chip designers to meet challenges posed by the ongoing increase of algorithmic complexity and required data throughput for today’s mobile applications; • Describes techniques for improved utilization of the bandwidth, as well as maximizing area and power profile to reduce fabrication costs; • Focuses on advanced algorithms that are actually in use in modern communications systems.

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