Book contents
- Frontmatter
- Contents
- List of Contributors
- Part I Overview
- Part II Physical Layer Design
- Part III Resource Allocation and Network Management
- 9 Delay and Traffic Matching in Ultra-dense Networks
- 10 Traffic Offloading in Software Defined Ultra-dense Networks
- 11 Resource Allocation in Ultra-dense Networks
- 12 Wireless Edge Caching in Ultra-dense Networks
- 13 User Association in Ultra-dense Networks
- 14 UAV-Based Ultra-dense Networks
- 15 Generalized Low-Rank Optimization for Ultra-dense Fog-RANs
- Part IV Field Trials and Tests
- Index
9 - Delay and Traffic Matching in Ultra-dense Networks
from Part III - Resource Allocation and Network Management
Published online by Cambridge University Press: 12 October 2020
- Frontmatter
- Contents
- List of Contributors
- Part I Overview
- Part II Physical Layer Design
- Part III Resource Allocation and Network Management
- 9 Delay and Traffic Matching in Ultra-dense Networks
- 10 Traffic Offloading in Software Defined Ultra-dense Networks
- 11 Resource Allocation in Ultra-dense Networks
- 12 Wireless Edge Caching in Ultra-dense Networks
- 13 User Association in Ultra-dense Networks
- 14 UAV-Based Ultra-dense Networks
- 15 Generalized Low-Rank Optimization for Ultra-dense Fog-RANs
- Part IV Field Trials and Tests
- Index
Summary
To take full advantage of the ultra-dense architecture and efficiently serve the traffic with spatiotemporal fluctuation, the transmission mechanisms should be redesigned under the constraints of backhaul and energy consumption. In this chapter, we summarize and classify the spatiotemporal arrival properties of different traffic in ultra-dense networks, and optimize several promising technologies to match the traffic. A new approach based on combining stochastic geometry and queueing theory is proposed to provide a useful guidance for the design of ultra-dense networks.
Keywords
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- Chapter
- Information
- Ultra-dense NetworksPrinciples and Applications, pp. 143 - 163Publisher: Cambridge University PressPrint publication year: 2020