Probability of Interference-Optimal and Energy-Efficient Analysis for Topology Control in Wireless Sensor Networks
Abstract
:1. Introduction
- What is the probability that the network interference is reduced when adjusting the transmission range?
- What are the properties of this probability, such as how this probability varies when the network topology or the transmission range changes?
- If the network topology is fixed, which transmission range has the highest probability of interference-optimality?
- What is the relationship between the interference-optimal and the energy-efficient, i.e., the probability that the interference-optimality and energy-efficiency can be achieved at the same time?
- We explore the relationship between the node distance and the overlapping coverage area of two nodes;
- We analyze the probability of interference-optimality when adjusting the transmission range;
- We calculate the probability of interference-optimality under specific transmission range and find out the optimal transmission range which has maximum probability of interference-optimality;
- We investigate the relationship between energy-efficiency and interference-optimality.
2. Related Works
3. Network Model
4. Network Interference Probability Analysis
4.1. Homogenous Node Deployment Probability Analysis
4.2. Heterogeneous Node Deployment Probability Analysis
4.2.1. The Node Distance is
4.2.2. The Node Distance is
5. The Relationship between Energy-Efficiency and Interference-Optimality
5.1. Homogenous Node Deployment Mode
- (1)
- The minimum probability can be calculated when :
- (2)
- The maximum probability can be calculated when :
5.2. Heterogeneous Node Deployment Mode
6. Simulation and Discussion
6.1. Probability Analysis in Homogenous Network
6.2. Probability Analysis in Heterogeneous Networks
6.3. The Relationship between Interference-Optimality and Energy Efficiency
7. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Parameters | Meaning of the Parameters |
---|---|
r | the original transmission range of node |
r1 | the transmission range of node |
d | the distance between node u and node v |
d1 | the distance between node u and node |
s | the coverage area of nodes |
p | the probability of interference-optimality under different original transmission range r |
ps | the probability of interference-optimality under different transmission range r1 |
the energy needed before reducing the transmission range | |
the energy needed after reducing the transmission range | |
the interference of edge (u, v) |
Points | A | B | C | D | E | F | G |
---|---|---|---|---|---|---|---|
Coordinate | (0.84r, 0.84r) | (0.99r, 0.495r) | (r, 0.343r) | (r, 0.5r) | (0.495r, 0.99r) | (0.5r, r) | (0.343r, r) |
Coordinates | F | E | H |
---|---|---|---|
(0.94r, 0.36r) | (0.36r, 0.94r) | (0.71r, 0.71r) | |
(0.88r, 0.68r) | (0.68r, 0.88r) | (0.79r, 0.79r) | |
(0.86r, 0.83r) | (0.83r, 0.86r) | (0.84r, 0.84r) |
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Li, N.; Martínez-Ortega, J.-F.; Diaz, V.H.; Meneses Chaus, J.M. Probability of Interference-Optimal and Energy-Efficient Analysis for Topology Control in Wireless Sensor Networks. Appl. Sci. 2016, 6, 396. https://doi.org/10.3390/app6120396
Li N, Martínez-Ortega J-F, Diaz VH, Meneses Chaus JM. Probability of Interference-Optimal and Energy-Efficient Analysis for Topology Control in Wireless Sensor Networks. Applied Sciences. 2016; 6(12):396. https://doi.org/10.3390/app6120396
Chicago/Turabian StyleLi, Ning, José-Fernán Martínez-Ortega, Vicente Hernández Diaz, and Juan Manuel Meneses Chaus. 2016. "Probability of Interference-Optimal and Energy-Efficient Analysis for Topology Control in Wireless Sensor Networks" Applied Sciences 6, no. 12: 396. https://doi.org/10.3390/app6120396
APA StyleLi, N., Martínez-Ortega, J. -F., Diaz, V. H., & Meneses Chaus, J. M. (2016). Probability of Interference-Optimal and Energy-Efficient Analysis for Topology Control in Wireless Sensor Networks. Applied Sciences, 6(12), 396. https://doi.org/10.3390/app6120396