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El. knyga: Sustainable Wireless Networks

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This brief focuses on network planning and resource allocation by jointly considering cost and energy sustainability in wireless networks with sustainable energy. The characteristics of green energy and investigating existing energy-efficient green approaches for wireless networks with sustainable energy is covered in the first part of this brief. The book then addresses the random availability and capacity of the energy supply. The authors explore how to maximize the energy sustainability of the network and minimize the failure probability that the mesh access points (APs) could deplete their energy and put the network out of service due to the unreliable energy supply. This brief also studies network resource management issues in green wireless networks to minimize cost. It jointly considers the relay node (RN) placement and sub-carrier allocation (RNP-SA) issues in wireless networks with sustainable energy, and then formulates the problem into a mixed integer non-linear programming problem. Concise and informative, this brief is a useful resource for professionals or researchers studying wireless networks, communication networks, and energy efficiency. Advanced-level students interested in energy technology or communications engineering will also find the material valuable.
1 Introduction
1(8)
1.1 Network Planning
3(1)
1.2 Energy Modeling
4(1)
1.3 Resource Allocation
4(1)
1.4 Outline
5(4)
References
6(3)
2 Background and Literature Survey
9(8)
2.1 Network Planning
9(1)
2.2 Energy Modeling
10(1)
2.3 Resource Allocation
11(6)
References
12(5)
3 Joint Relay Placement and Sub-carrier Allocation in Sustainable Wireless Networks
17(20)
3.1 Introduction
17(1)
3.2 System Model
18(3)
3.3 Problem Formulation
21(2)
3.3.1 QoS and Energy Sustainability Constraints
22(1)
3.4 RNP-SA Algorithms
23(6)
3.4.1 Algorithms Overview
23(1)
3.4.2 Sub-Carrier and Traffic Over Rate
24(1)
3.4.3 RNP-SA with Top-Down Algorithm
25(1)
3.4.4 RNP-SA with Bottom-up Algorithm
26(1)
3.4.5 Time Complexity Analysis of the RNP-SA-t/b Algorithms
27(2)
3.5 Simulation Results
29(7)
3.5.1 Simulation Configurations
29(1)
3.5.2 Traffic Load Oriented Greedy Algorithm
30(1)
3.5.3 Performance Evaluation
31(5)
3.6 Summary
36(1)
References
36(1)
4 Analysis and Resource Management for Sustainable Wireless Networks
37(20)
4.1 Introduction
37(1)
4.2 System Model
38(3)
4.2.1 Energy Model
38(2)
4.2.2 Network Model
40(1)
4.3 Transient Queuing Analysis of Energy Buffer
41(6)
4.3.1 Queue Model of Infinite Energy Buffer
42(2)
4.3.2 Queue Model of Finite Energy Buffer
44(3)
4.4 Adaptive Resource Management
47(2)
4.4.1 Relay Path Selection
47(2)
4.4.2 Admission Control
49(1)
4.5 Simulation Results
49(5)
4.5.1 Simulation Setup
49(1)
4.5.2 Energy Buffer
50(2)
4.5.3 Sustainable Network Performance
52(2)
4.6 Summary
54(3)
References
55(2)
5 Conclusions and Future Directions
57
References
58