Method for optimizing blind ultraviolet non line-of-sight Ad-hoc communication network shared channel
A technology of communication network and optimization method, which is applied in the field of shared channel optimization of solar-blind ultraviolet non-line-of-sight Ad-hoc communication network, and can solve problems such as directional beam directional transmission business conflicts, limited, time-space conflicts, etc.
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Embodiment 1
[0196] Example 1: In the hardware environment of Pentium(R) Dual-Core CPU, E5200 2.50GHz 1.21GHz, 2.00GB, the link conflict graph with 10 nodes, 16 nodes, and 21 nodes is dyed, and the following results are obtained. result:
[0197] It can be seen from Figure 7, Figure 8, Figure 9 and Table 1 that only 2 colors are used for the optimal coloring of the link conflict graph of 10 nodes, only 3 colors are used for 21 nodes, and only 3 colors are used for 16 nodes. The optimal coloring of the link conflict graph of nodes also uses 4 colors. This is because the relationship between the edges and vertices of the link conflict graph of 16 nodes is higher than the relationship between the edges and vertices of the link conflict graph of 21 nodes. Complex, so the number of colors used is relatively increased. But in terms of running time, 16 nodes took 48.59420s, and 21 nodes took 98.9220s, and the time spent was mainly used for the greedy algorithm operation when the group was initia...
Embodiment 2
[0200] Example 2: NS2 is used to simulate a scenario where 10 nodes are randomly distributed in an area of 1000m*1000m, the transmission range of the nodes is 200 meters, and the node movement is assumed to be a random walk. The main parameters of the simulation are shown in Table 2.
[0201] Table 2
[0202] parameter
value
number of nodes
10
Simulation range
1000m×1000m
packet size
216bit
Simulation time
1000s
physical layer rate
1028b / s
Node movement maximum speed
20m / s
[0203] Figure 12 The system throughput of UVAd-TDMA protocol and IEEE802.11 is compared. Under the same load, the system throughput of the UVAd-TDMA protocol is significantly improved compared with IEEE802.11. The reason for the improvement is that the UVAd-TDMA protocol uses the shared channel optimal allocation algorithm and the ultraviolet directional beam to increase the reuse of the time slot, which improves the...
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