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Figure 9 shows FICTC and distributed FICTC enjoy better maximum link interference performance over FLSS, LTRT, and NONE.
In order to guarantee minimized maximum link interference for each node, we use Prim's minimum spanning tree algorithm to obtain the node-disjoint paths.
The objective of the formulated channel assignment problem is to minimize the total number of interfering link pairs or minimize the maximum link interference.
Given an initial network G V,E), the maximum link interference of the topology G d (V',E') constructed by the proposed FICTC is minimized.
For different fault tolerance requirement, graph-based simulations results indicated that FICTC outperforms the state-of-the-art fault-tolerant topology control algorithms in terms of average node degree, maximum transmit radius, and maximum link interference.
The objective (6) is to minimize the maximum link interference, where ND v i ) denotes the neighboring set of v i. Fault-tolerant constraints in (7) emphasize the topology requirement between a specified node pair, which provides the flexibility for topology fault-tolerant requirement, and k ij is the value of specific fault-tolerant requirement.
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a Maximum links interference.
b Average transmission radius Fig. 9 Comparison of maximum links interference and average links interference.
In Fig. 9, we plot respectively the maximum links interference and average links interference for a varying number of nodes.
According to Section 4, our optimization objective is to minimize the maximum of link interference LIS v i, v j ) under topology fault-tolerant requirement N ft (v i,v j) > k ij for any two different node pair, i.e., our proposed topology control not only considers the link interference but also considers the different fault-tolerance requirement for any two node pair in topology.
To protect the PS better, besides the interference limits from the PBS, we consider a maximum link rate Rmax to limit the transmit power from the CBS further.
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maximum link capacity
maximum link length
maximum link degree
maximum link utilization
maximum block interference
maximum link layer
maximum link duration
maximum node interference
maximum link probability
maximum link rate
maximum link quality
maximum link throughput
maximum wave interference
maximum link bonus
maximum link distance
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