Wireless NetworkingElsevier, 2008. gada 9. maijs - 448 lappuses Over the past decade, the world has witnessed an explosion in the development and deployment of new wireless network technologies. From cellular mobile telephony to the ubiquitous “WiFi networks in coffee-shops and airports, to the emerging WiMAX wireless broadband access networks, the menu of wireless access systems has become so comprehensive that wireline access to user devices may soon become a relic of the past. Wireless Networking serves as a one-stop view of cellular, WiFi, and WiMAX networks, as well as the emerging wireless ad hoc and sensor networks. Rather than provide descriptive accounts of these technologies and standards, the book emphasizes conceptual perspectives on the modeling, analysis, design and optimization of such networks. Furthermore, the authors present wireless networking within the unifying framework of resource allocation, using simple abstractions of the underlying physical wireless communication. In short, Wireless Networking is an in-depth, exhaustive, and invaluable asset to anyone working in this rapidly evolving field.
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No grāmatas satura
1.–5. rezultāts no 93.
xiv. lappuse
... problems in the areas of stochastic networks and distributed algorithms that are intrinsically important and ... problem has been analytically formulated, we draw upon a wide variety of techniques to analyze it. In this process ...
... problems in the areas of stochastic networks and distributed algorithms that are intrinsically important and ... problem has been analytically formulated, we draw upon a wide variety of techniques to analyze it. In this process ...
xv. lappuse
... problem at hand. However, we have attempted to make the book as self-contained as possible. Wherever possible, we ... problems as the optimal allocation of time and space in a network. In Chapter 9 we explore fundamental limits of this ...
... problem at hand. However, we have attempted to make the book as self-contained as possible. Wherever possible, we ... problems as the optimal allocation of time and space in a network. In Chapter 9 we explore fundamental limits of this ...
xvi. lappuse
... problems, PostScript files of the figures used in the book, and other instructional material. An instructor's manual containing solutions to all the exercises and problems and some supplementary problems is also available from the ...
... problems, PostScript files of the figures used in the book, and other instructional material. An instructor's manual containing solutions to all the exercises and problems and some supplementary problems is also available from the ...
1. lappuse
... problem of resource allocation when several devices share a portion of the RF spectrum allocated to them. Next, we provide a taxonomy of current wireless networks. The material in the book is organized along this taxonomy. Then, in this ...
... problem of resource allocation when several devices share a portion of the RF spectrum allocated to them. Next, we provide a taxonomy of current wireless networks. The material in the book is organized along this taxonomy. Then, in this ...
8. lappuse
... problem is to communicate between the various devices. Nodes need to discover neighbors in order to form a topology, good paths need to be found, and then some form of time scheduling of transmissions needs to be employed in order to ...
... problem is to communicate between the various devices. Nodes need to discover neighbors in order to form a topology, good paths need to be found, and then some form of time scheduling of transmissions needs to be employed in order to ...
Saturs
1 | |
15 | |
53 | |
81 | |
Chapter 5 Cellular CDMA | 125 |
Chapter 6 Cellular OFDMATDMA | 161 |
Chapter 7 Random Access and Wireless LANs | 187 |
Optimal Routing and Scheduling | 243 |
Fundamental Limits | 291 |
Chapter 10 Ad Hoc Wireless Sensor Networks WSNs | 337 |
Appendices | 375 |
Bibliography | 407 |
Index | 417 |
Citi izdevumi - Skatīt visu
Bieži izmantoti vārdi un frāzes
access networks algorithm Aloha analysis arrival rate assume average backoff bandwidth bit rate blocking probability capacity carrier CDMA cellular networks channel gain Chapter collision computation connected consider coverage CTMC decode defined delay denote discussion distributed downlink edge example fading feasible flow frame function Gaussian given graph handover hence IEEE inequality interference Internet locations log2 matrix maximum mean mesh networks mobile modulation neighbors number of nodes obtain OFDM OFDMA optimal packet loss path loss path loss exponent Poisson Poisson process power allocation power constraint power control problem protocol queue random variables Rayleigh fading receiver routing scheduling Section sensor network sequence server signal SINR slot slotted Aloha spatial reuse spectrum symbol Theorem throughput traffic transmission transmit uplink users vector voice WiMAX wireless mesh networks wireless networks WLAN
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