Antennas for Portable Devices (Hardcover)
暫譯: 便攜式設備天線 (精裝版)

Zhi Ning Chen

  • 出版商: Wiley
  • 出版日期: 2007-05-01
  • 售價: $1,560
  • 貴賓價: 9.8$1,529
  • 語言: 英文
  • 頁數: 304
  • 裝訂: Hardcover
  • ISBN: 0470030739
  • ISBN-13: 9780470030738
  • 相關分類: 天線相關 Antennas
  • 下單後立即進貨 (約5~7天)

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商品描述

Description

Offers a comprehensive and practical reference guide to antenna design and engineering for portable devices

Antennas are often the most bulky components in many portable wireless devices such as mobile phones.  Whilst the demand for ever smaller and more powerful wireless devices increases, as does the importance of designing and engineering smaller antennas to fit these devices. 

Antennas for Portable Devices provides a complete and cutting-edge guide to the design and engineering of small antennas for portable electronic devices such as mobile phone handsets, laptop computers, RFID (radio frequency identification), microwave thermal therapies devices, wearable devices, and UWB (ultra-wideband) based consumer devices.

The book addresses practical engineering issues that antenna professionals have to deal with. It explains the immediate demands for existing systems; discusses the antenna technology for the latest and emerging applications, and gives comprehensive coverage of hot topics in the wireless industry.  Issues including design considerations, engineering design, measurement setup and methodology, and practical applications are all covered in depth.

Antennas for Portable Devices:

  • Covers antennas for all modern portable wireless devices from handsets, RFID tags, laptops, wearable sensors, UWB-based wireless USB dongles and handheld microwave treatment devices
  • Explains how to design and engineer applications for miniaturization of antenna technology, utilising practical case studies to provide the reader with an understanding of systems and design skills
  • Links the basic antenna theory, with design methodology, and engineering design
  • Is amply illustrated with numerous figures and data tables of antenna designs to aid understanding
  • Features contributions from industry and research experts in antenna technology and applications

This invaluable resource will provide a comprehensive overview of miniaturizing antenna technology for antenna engineers in industry, and R&D organizations, graduate students, consultants, researchers, RF professionals, technical managers, as well as practitioners working in the area of consumer electronics, RF systems, wireless communications, or bio-medical devices.

 

Table of Contents

Foreword.

Acknowledgements.

List of Contributors.

1 Introduction (Zhi Ning Chen).

References.

2 Handset Antennas (Brian S. Collins).

2.1 Introduction.

2.2 Performance Requirements.

2.3 Electrically Small Antennas.

2.4 Classes of Handset Antennas.

2.5 The Quest for Efficiency and Extended Bandwidth.

2.5.1 Handset Geometries.

2.5.2 Antenna Position in the Handset.

2.5.3 The Effect of the User.

2.5.4 Antenna Volume.

2.5.5 Impedance Behavior of a Typical Antenna in the Low Band.

2.5.6 Fields and Currents on Handsets.

2.5.7 Managing the Length–Bandwidth Relationship.

2.5.8 The Effect on RF Efficiency of Other Components of the Handset.

2.5.9 Specific Absorption Rate.

2.5.10 Hearing Aid Compliance.

2.5.11 Economic Considerations.

2.6 Practical Design.

2.6.1 Simulations.

2.6.2 Materials and Construction.

2.6.3 Recycling.

2.6.4 Building the Prototype.

2.6.5 Measurement.

2.6.6 Design Optimization.

2.7 Starting Points for Design and Optimization.

2.7.1 External Antennas.

2.7.2 Balanced Antennas.

2.7.3 Antennas for Other Services.

2.7.4 Dual-Antenna Interference Cancellation.

2.7.5 Multiple Input, Multiple Output.

2.7.6 Antennas for Lower-Frequency Bands – TV and Radio Services.

2.8 The RF Performance of Typical Handsets.

2.9 Conclusion.

References.

3 RFID Tag Antennas (Xianming Qing and Zhi Ning Chen).

3.1 Introduction.

3.2 RFID Fundamentals.

3.2.1 RFID System Configuration.

3.2.2 Classification of RFID Systems.

3.2.3 Principles of Operation.

3.2.4 Frequencies, Regulations and Standardization.

3.3 Design Considerations for RFID Tag Antennas.

3.3.1 Near-field RFID Tag Antennas.

3.3.2 Far-field RFID Tag Antennas.

3.4 Effect of Environment on RFID Tag Antennas.

3.4.1 Near-field Tags.

3.4.2 Far-field Tags.

3.4.3 Case Study.

3.5 Summary.

References.

4 Laptop Antenna Design and Evaluation (Duixian Liu and Brian Gaucher).

4.1 Introduction.

4.2 Laptop-Related Antenna Issues.

4.2.1 Typical Laptop Display Construction.

4.2.2 Possible Antennas for Laptop Applications.

4.2.3 Mechanical and Industrial Design Restrictions.

4.2.4 LCD Surface Treatment in Simulations.

4.2.5 Antenna Orientation in Display.

4.2.6 The Difference between Laptop and Cellphone Antennas.

4.2.7 Antenna Location Evaluations.

4.3 Antenna Design Methodology.

4.3.1 Modeling.

4.3.2 Cut-and-Try.

4.3.3 Measurements.

4.4 PC Card Antenna Performance and Evaluation.

4.5 Link Budget Model.

4.6 An INF Antenna Implementation.

4.7 Integrated and PC Card Solutions Comparison.

4.8 Dualband Examples.

4.8.1 An Inverted-F Antenna with Coupled Elements.

4.8.2 A Dualband PCB Antenna with Coupled Floating Elements.

4.8.3 A Loop Related Dualband Antenna.

4.9 Remarks on WLAN Antenna Design and Evaluations.

4.10 Antennas for Wireless Wide Area Network Applications.

4.10.1 INF Antenna Height Effects on Bandwidth.

4.10.2 A WWAN Dualband Example.

4.11 Ultra-Wide Band Antennas.

4.11.1 Description of the UWB Antenna.

4.11.2 UWB Antenna Measurement Results.

References.

5 Antenna Issues in Microwave Thermal Therapies (Koichi Ito and Kazuyuki Saito).

5.1 Microwave Thermal Therapies.

5.1.1 Introduction.

5.1.2 Classification by Therapeutic Temperature.

5.1.3 Heating Schemes.

5.2 Interstitial Microwave Hyperthermia.

5.2.1 Introduction and Requirements.

5.2.2 Coaxial-Slot Antenna.

5.2.3 Numerical Calculation.

5.2.4 Performance of the Coaxial-Slot Antenna.

5.2.5 Temperature Distributions Around the Antennas.

5.3 Clinical Trials.

5.3.1 Equipment.

5.3.2 Treatment by Use of a Single Antenna.

5.3.3 Treatment by Use of an Array Applicator.

5.3.4 Results of the Treatment.

5.4 Other Applications.

5.4.1 Treatment of Brain Tumors.

5.4.2 Intracavitary Microwave Hyperthermia for Bile Duct Carcinoma.

5.5 Summary.

References.

6 Antennas for Wearable Devices (Akram Alomainy, Yang Hao and Frank Pasveer).

6.1 Introduction.

6.1.1 Wireless Body Area Networks.

6.1.2 Antenna Design Requirements for Wireless BAN/PAN.

6.2 Modelling and Characterization of Wearable Antennas.

6.2.1 Wearable Antennas for BANs/PANs.

6.2.2 UWB Wearable Antennas.

6.3 WBAN Radio Channel Characterization and Effect of Wearable Antennas.

6.3.1 Radio Propagation Measurement for WBANs.

6.3.2 Propagation Channel Characteristics.

6.4 Case Study: A Compact Wearable Antenna for Healthcare Sensors.

6.4.1 Application Requirements.

6.4.2 Theoretical Antenna Considerations.

6.4.3 Sensor Antenna Modelling and Characterization.

6.4.4 Propagation Channel Characterization.

6.5 Summary.

References.

7 Antennas for UWB Applications (Zhi Ning Chen and Terence S.P. See).

7.1 UWB Wireless Systems.

7.2 Challenges in UWB Antenna Design.

7.3 State-of-the-Art Solutions.

7.3.1 Frequency-Independent Designs.

7.3.2 Planar Broadband Designs.

7.3.3 Crossed and Rolled Planar Broadband Designs.

7.3.4 Planar Printed PCB Designs.

7.3.5 Planar Antipodal Vivaldi Designs.

7.4 Case Study.

7.4.1 Small Printed Antenna with Reduced Ground-Plane Effect.

7.4.2 Wireless USB.

7.5 Summary.

References.

Index.

商品描述(中文翻譯)

描述

提供一個全面且實用的便攜設備天線設計與工程參考指南

天線通常是許多便攜無線設備(如手機)中最笨重的組件。隨著對越來越小且更強大的無線設備需求的增加,設計和工程更小的天線以適應這些設備的重要性也隨之上升。

《便攜設備的天線》提供了一個完整且前沿的指南,針對便攜電子設備(如手機、筆記型電腦、RFID(無線頻率識別)、微波熱療設備、可穿戴設備和基於UWB(超寬頻)的消費者設備)的小型天線設計與工程。

本書針對天線專業人士必須面對的實際工程問題進行探討。它解釋了現有系統的即時需求;討論了最新和新興應用的天線技術,並全面涵蓋了無線行業的熱門話題。設計考量、工程設計、測量設置和方法論以及實際應用等問題均有深入探討。

《便攜設備的天線》:

- 涵蓋所有現代便攜無線設備的天線,包括手機、RFID標籤、筆記型電腦、可穿戴感測器、基於UWB的無線USB隨身碟和手持微波治療設備
- 解釋如何設計和工程應用以實現天線技術的微型化,利用實際案例研究使讀者理解系統和設計技能
- 將基本天線理論與設計方法論和工程設計相連結
- 以大量圖示和數據表來輔助理解
- 特別收錄來自天線技術和應用領域的行業及研究專家的貢獻

這本寶貴的資源將為行業中的天線工程師、研發機構、研究生、顧問、研究人員、RF專業人士、技術經理以及在消費電子、RF系統、無線通信或生醫設備領域工作的從業人員提供有關天線技術微型化的全面概述。

目錄

前言

致謝

貢獻者名單

1 引言(Zhi Ning Chen)

參考文獻

2 手機天線(Brian S. Collins)

2.1 引言

2.2 性能要求

2.3 電氣小型天線

2.4 手機天線類別

2.5 尋求效率和擴展帶寬

2.5.1 手機幾何形狀

2.5.2 手機中的天線位置

2.5.3 使用者的影響

2.5.4 天線體積

2.5.5 典型天線在低頻段的阻抗行為

2.5.6 手機上的場和電流

2.5.7 管理長度與帶寬的關係

2.5.8 其他手機組件對RF效率的影響

2.5.9 特定吸收率

2.5.10 助聽器合規性

2.5.11 經濟考量

2.6 實用設計

2.6.1 模擬

2.6.2 材料與建造

2.6.3 回收

2.6.4 建立原型

2.6.5 測量

2.6.6 設計優化

2.7 設計與優化的起點

2.7.1 外部天線

2.7.2 平衡天線

2.7.3 其他服務的天線

2.7.4 雙天線干擾消除

2.7.5 多輸入多輸出

2.7.6 低頻段天線 - 電視和廣播服務

2.8 典型手機的RF性能

2.9 結論

參考文獻

3 RFID標籤天線(Xianming Qing 和 Zhi Ning Chen)

3.1 引言

3.2 RFID基礎

3.2.1 RFID系統配置

3.2.2 RFID系統分類

3.2.3 操作原理

3.2.4 頻率、法規與標準化

3.3 RFID標籤天線的設計考量

3.3.1 近場RFID標籤天線

3.3.2 遠場RFID標籤天線

3.4 環境對RFID標籤天線的影響

3.4.1 近場標籤

3.4.2 遠場標籤

3.4.3 案例研究

3.5 總結

參考文獻

4 筆記型電腦天線設計與評估(Duixian Liu 和 Brian Gaucher)

4.1 引言

4.2 與筆記型電腦相關的天線問題

4.2.1 典型筆記型電腦顯示器結構

4.2.2 筆記型電腦應用的可能天線

4.2.3 機械和工業設計限制

4.2.4 模擬中的LCD表面處理

4.2.5 顯示器中的天線方向

4.2.6 筆記型電腦與手機天線的差異

4.2.7 天線位置評估

4.3 天線設計方法論

4.3.1 建模

4.3.2 嘗試與修正

4.3.3 測量

4.4 PC卡天線性能與評估

4.5 連結預算模型

4.6 一個INF天線的實現

4.7 集成與PC卡解決方案比較

4.8 雙頻範例

4.8.1 一個帶耦合元件的倒F天線

4.8.2 一個帶耦合浮動元件的雙頻PCB天線

4.8.3 一個環形相關的雙頻天線

4.9 WLAN天線設計與評估的備註

4.10 無線廣域網應用的天線

4.10.1 INF天線高度對帶寬的影響

4.10.2 一個WWAN雙頻範例

4.11 超寬頻天線

4.11.1 UWB天線的描述

4.11.2 UWB天線測量結果

參考文獻