Orthogonal Methods for Array Synthesis: Theory and the ORAMA Computer Tool
暫譯: 陣列合成的正交方法:理論與 ORAMA 電腦工具
John Sahalos
- 出版商: Wiley
- 出版日期: 2006-05-01
- 售價: $4,760
- 貴賓價: 9.5 折 $4,522
- 語言: 英文
- 頁數: 228
- 裝訂: Hardcover
- ISBN: 0470017414
- ISBN-13: 9780470017418
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商品描述
Description
With the explosion of the wireless world, greater emphasis than ever before is being placed on the effective design of antennas. Orthogonal Methods for Array Synthesis outlines several procedures of orthogonal methods suitable for antenna array synthesis. The book presents a simple approach to the design of antenna arrays to enable the reader to use the classical Orthogonal Method for synthesis of linear arrays.
This theory-based book, which includes rapid, effective solutions to design problems for communications applications and broadcasting, is amply illustrated with real-world examples and case studies. Also included in the book is the ORAMA MS Windows-compatible computer tool, patented by Professor Sahalos and his team.
- Provides comprehensive coverage of the basic principles of orthogonal methods including an analytical explanation of the orthogonal method (OM) and the orthogonal perturbation method (OP)
- Gives rapid, cost-effective solutions to antenna design problems for communications applications and broadcasting
- Illustrates all theory with practical applications gleaned from the author’s extensive experience in the field of orthogonal advanced methods for antennas
Providing a complete guide to the theory and applications of the Orthogonal Methods, this book is a must-read for antenna engineers and graduate students of electrical and computer engineering and physics.
Table of Contents
- Preface.
1 Antennas and Antenna Arrays.
1.1 Introduction.
1.2 Antenna Array Factor.
1.3 Elements and Array Types.
1.4 Antenna Parameters and Indices.
1.5 Antenna Input Impedance.
1.6 Antenna Arrays Classification.
1.7 Array Factor Classification.
References.
2 Arrays: Linear, Planar, 3D and Conformal.
2.1 Introduction.
2.2 Linear Arrays.
2.3 Uniform Linear Arrays.
2.4 Chebyshev Linear Arrays.
2.5 Linear Arrays from Sampling or Root Matching of Line Sources.
2.6 Planar Arrays.
2.7 3-D Arrays.
2.8 Conformal Arrays.
References.
3 Pattern Synthesis for Arrays.
3.1 Introduction.
3.2 Uniform Linear Array Synthesis.
3.3 Chebyshev Array Synthesis.
3.4 Synthesis by Sampling or by Root Matching.
3.5 Synthesis by Fourier Transform.
3.6 The Woodward - Lawson (WL) Method.
3.7 Array Synthesis as an Optimization Problem.
3.8 Synthesis by Convolution of Linear, Planar and 3-D Arrays.
References.
4 The Orthogonal Methods.
4.1 Introduction.
4.2 Synthesis of Non-uniformly Spaced Linear Arrays: The Matrix Inversion Method.
4.3 Synthesis of Non-uniformly Spaced Linear Arrays: The Orthogonal Method.
4.5 Quantized Excitation and Geometry Synthesis of a Linear Array: The Orthogonal Perturbation Method.
4.6 Synthesis of Non-uniformly Spaced Planar Arrays: The Orthogonal Method.
4.7 Synthesis of Non-uniformly Spaced 3-D Arrays: The Orthogonal Method.
4.8 Synthesis of Non-uniformly Spaced 3-D Arrays with Arbitrarily Oriented Dipoles: The Non-parallel Orthogonal Method.
4.9 Synthesis of Arrays of Wire Antennas: The MoM Orthogonal Method.
4.10 Synthesis of General Antenna Arrays: The Orthogonal Compensation Method.
4.11 Synthesis of Conformal Arrays: The Conformal Orthogonal Method.
References.
5 The Orama Computer Tool (George S. Miaris and John N. Sahalos).
5.1 Introduction.
5.2 Description of the ORAMA Program.
5.3 Element Types.
5.4 Design Examples.
5.5 Conclusion.
References.
Index.
商品描述(中文翻譯)
**描述**
這是第一次對與正交方法相關的數學和數值技術進行如此完整的系統分析。
隨著無線世界的爆炸性發展,對天線有效設計的重視程度比以往任何時候都要高。《正交方法在陣列合成中的應用》概述了幾種適合天線陣列合成的正交方法程序。本書提供了一種簡單的方法來設計天線陣列,使讀者能夠使用經典的正交方法來合成線性陣列。
這本以理論為基礎的書籍,包含了針對通訊應用和廣播的設計問題的快速有效解決方案,並用真實案例和實例進行充分說明。此外,書中還包含了由Sahalos教授及其團隊專利的ORAMA MS Windows兼容計算機工具。
- 提供正交方法基本原理的全面覆蓋,包括正交方法(OM)和正交擾動方法(OP)的分析解釋
- 為通訊應用和廣播的天線設計問題提供快速、具成本效益的解決方案
- 用作者在正交先進方法領域的豐富經驗所獲得的實際應用來說明所有理論
本書提供了正交方法的理論和應用的完整指南,是天線工程師和電機及計算機工程、物理學研究生的必讀書籍。
**目錄**
**前言**
**1 天線與天線陣列**
1.1 介紹
1.2 天線陣列因子
1.3 元件與陣列類型
1.4 天線參數與指數
1.5 天線輸入阻抗
1.6 天線陣列分類
1.7 陣列因子分類
參考文獻
**2 陣列:線性、平面、3D 和符合性**
2.1 介紹
2.2 線性陣列
2.3 均勻線性陣列
2.4 切比雪夫線性陣列
2.5 來自取樣或根匹配的線源的線性陣列
2.6 平面陣列
2.7 3D 陣列
2.8 符合性陣列
參考文獻
**3 陣列的模式合成**
3.1 介紹
3.2 均勻線性陣列合成
3.3 切比雪夫陣列合成
3.4 通過取樣或根匹配進行合成
3.5 通過傅立葉變換進行合成
3.6 Woodward - Lawson (WL) 方法
3.7 將陣列合成視為優化問題
3.8 通過線性、平面和3D陣列的卷積進行合成
參考文獻
**4 正交方法**
4.1 介紹
4.2 非均勻間隔線性陣列的合成:矩陣反演法
4.3 非均勻間隔線性陣列的合成:正交方法
4.5 量化激勵和線性陣列的幾何合成:正交擾動方法
4.6 非均勻間隔平面陣列的合成:正交方法
4.7 非均勻間隔3D陣列的合成:正交方法
4.8 具有任意方向偶極子的非均勻間隔3D陣列的合成:非平行正交方法
4.9 線天線陣列的合成:MoM正交方法
4.10 一般天線陣列的合成:正交補償方法
4.11 符合性陣列的合成:符合性正交方法
參考文獻
**5 Orama計算機工具(George S. Miaris 和 John N. Sahalos)**
5.1 介紹
5.2 ORAMA程序的描述
5.3 元件類型
5.4 設計範例
5.5 結論
參考文獻
**索引**