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Metric of interference and channel switching (MIC) [16] improves WCETT by considering inter-flow interference.
Metric of interference and channel switching (MIC) is developed to capture the interference aware parameters of the links [37].
Metric of interference and channel switching is based on ETT and is explained as follows: MIC p = 1 N × min ( ETT ) ∑ link l ∈ p IRU l + ∑ i ∈ p CSC i (10).
In particular, expected transmission count (ETX [13], expected transmission time (ETT [14], weighted cumulative ETT (WCETT [14], and Metric of Interference and Channel-switching (MIC)[15] have been designed for fixed ad hoc networks but not much is known about their performance in MANETs.
These are hop count, per-hop round trip time (RTT), per-hop packet pair delay (PktPair), expected transmission count (ETX), modified ETX (mETX), effective number of transmission (ENT), expected transmission time (ETT), weighted cumulative expected transmission time (WCETT), and metric of interference and channel switching (MIC).
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where p is the path in the network, metric of traffic interference (MTI) and CSC which measures the efficiency of flows routed through the path p. These two components of the metric measure the intra flow interference, inter flow interference, transmission rates, congested areas, and packet loss ratios.
iAWARE routing metric addresses the problem of interference in MCMR WMNs by combining the interference ratio (IR) with the ETT metric.
We propose an isotonic routing metric based on uniform description of interference and load, called MIL (metric based on uniform description of interference and load), in which equivalent bandwidth is utilized to describe logical inter-flow interference, intra-flow interference, and physical interference uniformly.
In this paper, we propose an isotonic routing metric, called MIL (metric based on uniform description of interference and load), which uniformly describes factors including physical interference, logical intra-flow and inter-flow interference, and node load.
In this section, we develop an isotonic routing metric based on uniform description of interference and load.
This is a conservative metric for the total effect of interference because it does not include the fraction of selected sites that are lost due to competition with other selected sites.
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