Fundamentals of Electromagnetic Nanonetworks in the Terahertz Band (Foundations and Trends® in Networking)

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Fundamentals of Electromagnetic Nanonetworks in the Terahertz Band (Foundations and Trends® in Networking)

  • ウェブストア価格 ¥25,363(本体¥23,058)
  • now publishers Inc(2013/12発売)
  • 外貨定価 UK£ 82.50
  • 【ウェブストア限定】洋書・洋古書ポイント5倍対象商品(~2/28)
  • ポイント 1,150pt
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  • 製本 Paperback:紙装版/ペーパーバック版/ページ数 178 p.
  • 言語 ENG
  • 商品コード 9781601987365

Full Description

It is widely accepted that nanonetworks will enable a plethora of long-awaited applications, ranging from healthcare to homeland security, industrial development and environmental protection. Enabling communication among nanomachines is still a major challenge.

While it is acknowledged that there is still a long way to go before having a fully functional nanomachine, this book makes the case that hardware-oriented research and communication-focused investigations will benefit from being conducted in parallel from an early stage.

Fundamentals of Electromagnetic Nanonetworks in the Terahertz Band defines the first steps towards enabling electromagnetic communication among nanomachines in the Terahertz Band (0.1-10 THz). The starting point is the development of novel graphene-based plasmonic nano-antennas, which efficiently operate in the Terahertz Band. The authors have developed a novel Terahertz Band channel model and investigated the potential of this frequency band by means of a channel capacity analysis. In light of the channel peculiarities and the nanomachine capabilities, they put forward a set of communication mechanisms for nanonetworks, which include femtosecond-long pulse-based modulations, low-weight channel coding schemes, a new symbol detection scheme at the receiver, and a new medium access control protocol for nanonetworks.

In addition, the book analyzes the performance of perpetual nanonetworks by developing a joint energy harvesting and energy consumption model for self-powered nanomachines. Finally, an emulation platform has been developed to simulate a one-to-one nano-link between nanomachines and validate the developed models.

Contents

1: Introduction 2: Graphene-based Plasmonic Nano-antenna for Terahertz Band Communication 3: Channel Modeling and Capacity Analysis for Nanonetworks in the Terahertz Band 4: Femtosecond-long Pulse-based Modulation for Terahertz Band Communication 5: Low-weight Channel Codes for Error Prevention in Electromagnetic Nanonetworks 6: Receiver Symbol Detection Scheme for Pulse-based Communication in Nanonetworks 7: Joint Energy Harvesting and Communication Analysis for Perpetual Nanonetworks in the Terahertz Band 8: PHLAME: A Physical Layer Aware MAC Protocol for Nanonetworks in the Terahertz Band 9: Emulation of a One-to-one Nano-Link 10: Conclusions and Future Work. Acknowledgements. References

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