Distance-Constrained Outage Probability Analysis for Device-to-Device Communications Underlaying Cellular Networks with Frequency Reuse Factor of 2
Abstract
:1. Introduction
2. Related Work
3. Contributions
- We introduce a novel resource allocation algorithm, which supports frequency reuse factor of 2.
- We analyze the outage probability of D2D pairs and overall system with respect to distance between D2D-Rx and eNB, SINR threshold, and number of available D2D pairs. The proposed scheme provides lowest outage probability as compared with other existing schemes.
- We improve the D2D throughput and overall system throughput with less computational complexity.
- We minimize the average energy consumption of the system with varying number of available D2D pairs.
- We discuss the fairness distribution of resources by considering Jain’s fairness index.
4. System Model
5. Proposed Scheme
Algorithm 1: Working of the proposed resource allocation scheme. |
1. Get all active cellular users and D2D pairs 2. Set and 3. for t=1 to RB do 4. Calculate , , and 5. Calculate , , and 6. Calculate and ] 7. if ) then 8. Calculate 9. else if ( ) then 10. recalculate , , and and repeat the step 6 11. end if end for |
5.1. Formulation of Signal-to-Interference-Plus-Noise Ratio (SINR)
5.2. Formulation of Outage Probability ()
5.3. Channel Model
5.4. Resource Sharing Optimization
5.5. Jain’s Fairness Index (JFI)
5.6. Complexity Anaylis
6. Performance Analysis
6.1. Simulation Parameters and Values
6.2. Simulation Results and Discussion
6.2.1. Discussion on Performance of D2D Communications
6.2.2. Discussion on Overall System Performance
7. Conclusions
Author Contributions
Funding
Conflicts of Interest
References
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Simulation Parameters | Values |
---|---|
Cell outline | Hexagonal cell framework |
Total number of resource blocks | 50 [26] |
Cellular user transmission power | 20 dBm |
D2D transmission power | 15 dBm |
Antenna type | 3–120° directional antennas |
Noise Power | −174 dBm/Hz |
D2D pair distance | 1–50 m |
Minimum device distance from eNB | 10 m |
Carrier frequency | 2 GHz |
Uplink bandwidth | 10 MHz [26] |
Path loss exponent | 3 |
Cell radius | 600 m |
Monte Carlo simulation runs | 15,000 |
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Ningombam, D.D.; Shin, S. Distance-Constrained Outage Probability Analysis for Device-to-Device Communications Underlaying Cellular Networks with Frequency Reuse Factor of 2. Computers 2018, 7, 50. https://doi.org/10.3390/computers7040050
Ningombam DD, Shin S. Distance-Constrained Outage Probability Analysis for Device-to-Device Communications Underlaying Cellular Networks with Frequency Reuse Factor of 2. Computers. 2018; 7(4):50. https://doi.org/10.3390/computers7040050
Chicago/Turabian StyleNingombam, Devarani Devi, and Seokjoo Shin. 2018. "Distance-Constrained Outage Probability Analysis for Device-to-Device Communications Underlaying Cellular Networks with Frequency Reuse Factor of 2" Computers 7, no. 4: 50. https://doi.org/10.3390/computers7040050
APA StyleNingombam, D. D., & Shin, S. (2018). Distance-Constrained Outage Probability Analysis for Device-to-Device Communications Underlaying Cellular Networks with Frequency Reuse Factor of 2. Computers, 7(4), 50. https://doi.org/10.3390/computers7040050