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Interference Mitigation with Selective Retransmissions in Wireless Sensor Networks.

By: Material type: TextTextPublisher: [Place of publication not identified] : Kassel University Press GmbH : Kassel University Press, 2016Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9783737601795
  • 3737601798
Subject(s): Genre/Form: Additional physical formats: Print version:: Interference mitigation with selective retransmissions in wireless sensor networks.DDC classification:
  • 621.3
Online resources:
Contents:
Front Cover; Title Page; Imprint; Dedication; Danksagung; Zusammenfassung; Abstract; Contents; List of Abbreviations; List of Symbols; Chapter 1 -- Introduction; 1.1 Motivation; 1.2 State of the Art; 1.3 Thesis Contribution; 1.4 Outline of the Thesis; 1.5 Notation; Chapter 2 -- Multiple-Input Multiple-Output Decoding Schemes; 2.1 Optimal MIMO Decoder; 2.2 Unordered Decoding Schemes; 2.2.1 Zero-Forcing Decoding; 2.2.2 Successive Interference Cancellation; 2.2.3 QR-Decomposition based Decoding; 2.2.4 Minimum Mean Square Error Decoding; 2.2.5 QR-Decomposition based MMSE Decoding.
2.2.6 Distortionless MMSE Decoding2.3 Ordered Decoding Schemes; 2.3.1 Vertical Bell Labs Layered Space-Time Decoding; 2.3.2 Sorted QR-Decomposition; 2.3.3 MMSE Sorted QR-Decomposition; Chapter 3 -- Automatic Repeat Request Protocols; 3.1 Stop-and-Wait Protocol; 3.2 Go-back-NARQ Protocol; 3.3 Selective-Repeat Protocol; 3.4 Hybrid-ARQ; 3.5 MIMO ARQ Protocols; 3.6 Recursive Spatial Multiplexing; Chapter 4 -- System Description; 4.1 System Architecture; 4.2 Signal Decoding Scheme; 4.3 Selective Retransmission Scheme; Chapter 5 -- Search Algorithms; 5.1 Zero-Forcing Algorithms.
5.1.1 Exhaustive Search Algorithm5.1.2 Optimal Search Algorithm; 5.1.3 Backward Search Algorithm; 5.1.4 Heuristic Search Algorithm; 5.2 MMSE Algorithms; 5.2.1 MMSE-OSA; 5.2.2 MMSE-HSA; 5.2.3 Distortionless MMSE Algorithm; 5.3 Simulation Results; 5.3.1 Comparison of Search Algorithms; 5.3.2 Complexity Considerations; 5.3.3 Comparison of Decoding Methods; Chapter 6 -- Throughput Consideration; 6.1 Sensor Selection; 6.2 Simulation Results; Chapter 7 -- Conclusions and Outlook; 7.1 Conclusions; 7.2 Open Problems; Appendix; Bibliography; Back Cover.
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Front Cover; Title Page; Imprint; Dedication; Danksagung; Zusammenfassung; Abstract; Contents; List of Abbreviations; List of Symbols; Chapter 1 -- Introduction; 1.1 Motivation; 1.2 State of the Art; 1.3 Thesis Contribution; 1.4 Outline of the Thesis; 1.5 Notation; Chapter 2 -- Multiple-Input Multiple-Output Decoding Schemes; 2.1 Optimal MIMO Decoder; 2.2 Unordered Decoding Schemes; 2.2.1 Zero-Forcing Decoding; 2.2.2 Successive Interference Cancellation; 2.2.3 QR-Decomposition based Decoding; 2.2.4 Minimum Mean Square Error Decoding; 2.2.5 QR-Decomposition based MMSE Decoding.

2.2.6 Distortionless MMSE Decoding2.3 Ordered Decoding Schemes; 2.3.1 Vertical Bell Labs Layered Space-Time Decoding; 2.3.2 Sorted QR-Decomposition; 2.3.3 MMSE Sorted QR-Decomposition; Chapter 3 -- Automatic Repeat Request Protocols; 3.1 Stop-and-Wait Protocol; 3.2 Go-back-NARQ Protocol; 3.3 Selective-Repeat Protocol; 3.4 Hybrid-ARQ; 3.5 MIMO ARQ Protocols; 3.6 Recursive Spatial Multiplexing; Chapter 4 -- System Description; 4.1 System Architecture; 4.2 Signal Decoding Scheme; 4.3 Selective Retransmission Scheme; Chapter 5 -- Search Algorithms; 5.1 Zero-Forcing Algorithms.

5.1.1 Exhaustive Search Algorithm5.1.2 Optimal Search Algorithm; 5.1.3 Backward Search Algorithm; 5.1.4 Heuristic Search Algorithm; 5.2 MMSE Algorithms; 5.2.1 MMSE-OSA; 5.2.2 MMSE-HSA; 5.2.3 Distortionless MMSE Algorithm; 5.3 Simulation Results; 5.3.1 Comparison of Search Algorithms; 5.3.2 Complexity Considerations; 5.3.3 Comparison of Decoding Methods; Chapter 6 -- Throughput Consideration; 6.1 Sensor Selection; 6.2 Simulation Results; Chapter 7 -- Conclusions and Outlook; 7.1 Conclusions; 7.2 Open Problems; Appendix; Bibliography; Back Cover.

Includes bibliographical references.

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