Principles of Ad-Hoc Networking
暫譯: 即時網路原則

Michel Barbeau, Evangelos Kranakis

  • 出版商: Wiley
  • 出版日期: 2007-06-01
  • 售價: $1,350
  • 貴賓價: 9.8$1,323
  • 語言: 英文
  • 頁數: 274
  • 裝訂: Hardcover
  • ISBN: 0470032901
  • ISBN-13: 9780470032909
  • 相關分類: Wireless-networksComputer-networks
  • 立即出貨 (庫存=1)

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Description

Principles of Ad Hoc Networking presents a systematic introduction to the fundamentals of ad hoc networks. 

An ad-hoc network is a small network, especially one with wireless or temporary plug-in connections. Typically, some of the network devices are part of the network only for the duration of a communications session or, in the case of mobile or portable devices, while in some close proximity to the rest of the network. These networks can range from small and static systems with constrained power resources to larger-scale dynamic and mobile environments. Wireless ad hoc networks facilitate numerous and diverse applications for establishing survivable dynamic systems in emergency and rescue operations, disaster relief and intelligent home settings.

 Principles of Ad Hoc Networking:

  • Introduces the essential characteristics of ad hoc networks such as: physical layer, medium access control, Bluetooth discovery and network formation, wireless network programming and protocols.
  • Explains the crucial components involved in ad-hoc networks in detail with numerous exercises to aid understanding.
  • Offers key results and merges practical methodologies with mathematical considerations.

Principles of Ad Hoc Networking will prove essential reading for graduate students in Computer Science, Electrical Engineering, Applied Mathematics and Physics as well as researchers in the field of ad hoc networking, professionals in wireless telecoms, and networking system developers.

Check out  www.scs.carleton.ca/~barbeau/pahn/index.htm for further reading, sample chapters, a bibliography and lecture slides!

 

Table of Contents

PREFACE.

1 INTRODUCTION.

2 WIRELESS DATA COMMUNICATIONS.

2.1 Signal representation.

2.2 Analog to digital conversion.

2.3 Digital to analog conversion.

2.4 Architecture of an SDR application.

2.5 Quadrature modulation and demodulation.

2.6 Spread spectrum.

2.7 Antenna.

2.8 Propagation.

2.9 Ultra wide band.

2.10 Energy management.

3 MEDIUM ACCESS CONTROL.

3.1 Fundamentals of probability and statistics.

3.1.1 General concepts.

3.1.2 Specific random variables.

3.1.3 Counting processes.

3.2 Modeling traffic.

3.2.1 Delay models.

3.2.2 Queueing models.

3.2.3 Birth-death processes.

3.2.4 M/M/1/1 queuing system.

3.2.5 M/M/m/1 queue: m servers.

3.2.6 Queues for channel allocation.

3.2.7 Queues with reserved channels for handoffs.

3.3 Multiple access.

3.3.1 Uncoordinated access.

3.3.2 Contention-based access.

3.4 Demand assigned multiple access.

3.4.1 Bit-Map.

3.4.2 Binary Countdown.

iv CONTENTS.

3.4.3 Splitting Algorithms.

3.5 Carrier sense multiple access.

3.5.1 Persistence.

3.5.2 Collision avoidance.

3.6 Medium access control in ad hoc networks.

3.6.1 Neighbor aware contention resolution.

3.6.2 Multiple access protocols.

3.6.3 Throughput analysis.

3.7 Bibliographic Comments.

3.8 Exercises.

4 AD HOC WIRELESS ACCESS.

4.1 Management of bluetooth networks.

4.1.1 Architecture.

4.1.2 The bluetooth asymmetric protocol.

4.1.3 Bluetooth protocol architecture (IEEE 802.15).

4.2 Model for node discovery in bluetooth.

4.2.1 Protocols for node discovery.

4.2.2 Multiple nodes competing for air-time.

4.3 Bluetooth formation algorithms.

4.3.1 Topology construction and scatternet formation algorithms.

4.4 Ad hoc mode of WiFi/802.11.

4.5 Mesh mode of WiMax/802.16.

4.5.1 Sleep mode.

4.6 Optical wireless links.

4.7 Bibliographic comments.

4.8 Exercises.

5 WIRELESS NETWORK PROGRAMMING.

5.1 Structure of information.

5.2 Socket.

5.3 Parameters and control.

5.4 Receiving frames.

5.5 Sending frames.

6 AD HOC NETWORK PROTOCOLS.

6.1 How does work normal IP routing?.

6.2 The reactive approach.

6.3 The proactive approach.

6.4 The hybrid approach.

6.4.1 Neighbor Discovery Protocol.

6.4.2 Intrazone Routing Protocol.

6.4.3 Interzone Routing Protocol.

6.5 Clustering.

6.5.1 Ad hoc network model.

6.5.2 Cluster formation.

CONTENTS v.

6.6 Quality of service.

6.7 Broadcasting and multicasting.

7 SENSOR NETWORK PROTOCOLS.

8 LOCATION AWARENESS.

8.1 Geographic Proximity.

8.1.1 Neighborhood graphs.

8.1.2 Relation between the neighborhood graphs.

8.2 Constructing Spanners of Ad hoc Networks.

8.2.1 Gabriel test.

8.2.2 Morelia test.

8.2.3 Half space proximal test.

8.2.4 Spanner for hosts with irregular transmission ranges.

8.3 Information Dissemination.

8.3.1 Routing in undirected planar graphs.

8.3.2 Traversal of quasi planar graphs.

8.3.3 Routing in directed planar graphs.

8.3.4 Routing in outerplanar graphs.

8.4 Random Unit Disc Graphs.

8.4.1 Poisson distribution in the plane.

8.4.2 Connectivity and k-Connectivity.

8.4.3 Euclidean MST.

8.4.4 NNG and k-NNG.

8.4.5 Delaunay triangulations.

8.4.6 Planar graphs and width of faces.

8.5 Geographic Location Determination.

8.5.1 Radiolocation techniques.

8.5.2 Computing the Geographic Location.

8.5.3 Three/Two neighbor algorithm.

8.5.4 Beyond distance one neighborhood.

8.6 Bibliographic Comments.

8.7 Exercises.

9 AD HOC NETWORK SECURITY.

9.1 Key Establishment.

9.2 Authentication.

9.3 Confidentiality.

9.4 Secure routing.

Bibliography.

References.

商品描述(中文翻譯)

**描述**

《Ad Hoc 網路原理》系統性地介紹了 ad hoc 網路的基本原理。
ad hoc 網路是一種小型網路,特別是具有無線或臨時插入連接的網路。通常,某些網路設備僅在通訊會話期間或在移動或可攜式設備與網路其他部分的近距離內時,才是網路的一部分。這些網路可以從小型靜態系統(具有有限的電力資源)到大型動態和移動環境不等。無線 ad hoc 網路促進了在緊急救援、災難救助和智能家居環境中建立可存活的動態系統的眾多和多樣化的應用。

《Ad Hoc 網路原理》:
- 介紹了 ad hoc 網路的基本特徵,例如:物理層、媒介存取控制、藍牙發現和網路形成、無線網路編程和協議。
- 詳細解釋了 ad hoc 網路中涉及的關鍵組件,並提供了大量練習以幫助理解。
- 提供了關鍵結果,並將實用方法與數學考量相結合。

《Ad Hoc 網路原理》將成為計算機科學、電機工程、應用數學和物理學研究生以及 ad hoc 網路領域的研究人員、無線電信專業人士和網路系統開發者的重要讀物。

請查看 www.scs.carleton.ca/~barbeau/pahn/index.htm 獲取進一步閱讀、樣章、參考書目和講義幻燈片!

**目錄**

前言
1 介紹
2 無線數據通信
2.1 信號表示
2.2 模擬到數位轉換
2.3 數位到模擬轉換
2.4 SDR 應用的架構
2.5 正交調變和解調
2.6 擴頻
2.7 天線
2.8 傳播
2.9 超寬頻
2.10 能源管理
3 媒介存取控制
3.1 機率和統計的基本原理
3.1.1 一般概念
3.1.2 特定隨機變數
3.1.3 計數過程
3.2 交通建模
3.2.1 延遲模型
3.2.2 排隊模型
3.2.3 出生-死亡過程
3.2.4 M/M/1/1 排隊系統
3.2.5 M/M/m/1 排隊:m 伺服器
3.2.6 通道分配的排隊
3.2.7 具有保留通道的排隊以進行切換
3.3 多重存取
3.3.1 無協調存取
3.3.2 基於競爭的存取
3.4 需求分配多重存取
3.4.1 位圖
3.4.2 二進位倒數
3.4.3 分割算法
3.5 載波感知多重存取
3.5.1 持續性
3.5.2 碰撞避免
3.6 ad hoc 網路中的媒介存取控制
3.6.1 鄰居感知的競爭解決
3.6.2 多重存取協議
3.6.3 吞吐量分析
3.7 參考文獻評論
3.8 練習
4 ad hoc 無線存取
4.1 藍牙網路的管理
4.1.1 架構
4.1.2 藍牙非對稱協議
4.1.3 藍牙協議架構 (IEEE 802.15)
4.2 藍牙中的節點發現模型
4.2.1 節點發現的協議
4.2.2 多個節點競爭空中時間
4.3 藍牙形成算法
4.3.1 拓撲構建和散射網形成算法
4.4 WiFi/802.11 的 ad hoc 模式
4.5 WiMax/802.16 的網狀模式
4.5.1 睡眠模式
4.6 光學無線鏈路
4.7 參考文獻評論
4.8 練習
5 無線網路編程
5.1 資訊結構
5.2 套接字
5.3 參數和控制
5.4 接收幀
5.5 發送幀
6 ad hoc 網路協議
6.1 正常 IP 路由是如何工作的?
6.2 反應式方法
6.3 主動式方法
6.4 混合方法
6.4.1 鄰居發現協議
6.4.2 區域內路由協議
6.4.3 區域間路由協議
6.5 聚類
6.5.1 ad hoc 網路模型
6.5.2 聚類形成
6.6 服務質量
6.7 廣播和多播
7 感測器網路協議
8 位置感知
8.1 地理鄰近
8.1.1 鄰域圖
8.1.2 鄰域圖之間的關係
8.2 構建 ad hoc 網路的 Spanners
8.2.1 Gabriel 測試
8.2.2 Morelia 測試
8.2.3 半空間近似測試
8.2.4 具有不規則傳輸範圍的主機的 Spanner
8.3 資訊傳播
8.3.1 在無向平面圖中的路由
8.3.2 準平面圖的遍歷
8.3.3 在有向平面圖中的路由
8.3.4 在外平面圖中的路由
8.4 隨機單位圓圖
8.4.1 平面中的 Poisson 分佈
8.4.2 連通性和 k-連通性
8.4.3 歐幾里得最小生成樹
8.4.4 NNG 和 k-NNG
8.4.5 Delaunay 三角剖分
8.4.6 平面圖和面寬
8.5 地理位置確定
8.5.1 無線定位技術
8.5.2 計算地理位置
8.5.3 三/二鄰居算法
8.5.4 超過距離一的鄰域
8.6 參考文獻評論
8.7 練習
9 ad hoc 網路安全
9.1 密鑰建立
9.2 認證
9.3 機密性
9.4 安全路由
參考書目
參考文獻