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Two heuristic algorithms are designed to assign transmission powers to mesh routers, such that the total interference or the maximum node interference in the network is minimized.
By the analysis of FICTC algorithm, we proved that FICTC not only meets the fault-tolerant requirement, but also minimizes the maximum node interference.
Therefore, the purpose of this paper is to solve the topology control problem that minimizes the maximum node interference for WMNs with different k ij connectivity requirements between any two nodes.
(3) We achieve minimizing the maximum node interference for attaining specific k ij connectivity between any two nodes and the finally extensive experiments by simulations to evaluate the performance of the proposed algorithms. .
(2) We integrate the minimize the maximum node interference into the topology control with different k ij connectivity requirements between any two nodes and present the detail steps of our proposed algorithms.
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Finally, different definitions of interference and several algorithms which target to construct network topologies such that maximum (or average) link (or node) interference of the topology is either minimized or approximately minimized are presented [30].
Figure 23 Node false position versus maximum node speed.
Then, we propose a fault-tolerance-and-interference-aware topology control (FICTC) algorithm, which not only satisfies different fault-tolerance requirements between any two nodes but also minimizes the maximum nodal interference.
Algorithm 1 Maximum node-degree start.
Therefore, interference between the macro BS and the RRHs refers to intra-cell interference or inter-node interference.
When multiple single-antenna half-duplex (HD) nodes communicate with a full-duplex (FD) base station equipped with multiple transmit and receive antennas, the uplink nodes would generate inter-node interference (INI) on the downlink nodes.
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maximal node interference
maximum node degree
maximum node value
maximum node coverage
maximum node speed
maximum node transmission
maximum node mobility
maximum node velocity
maximum block interference
maximum node density
maximum wave interference
maximum node number
maximum link interference
maximum node utilisation
maximum nodal interference
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