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(iii) O ff-P hase is preserved for data-collection nodes to power off their radios.
While, how can data-collection nodes know the time of next schedule broadcast so as to power on their radios?
Figure 5 Flow chart for (a) data-gathering nodes and (b) data-collection nodes to establish and maintain matching schedules in ASMAC.
(i) T RFR-P hase is preserved for data-collection nodes to send TRFR messages (Figure 3) to data-gathering nodes.
(iv) O n-P hase is preserved for data-collection nodes to power on their radios to carry on communication. Figure 3 TRFR message format. .
The solution in ASMAC is to rebroadcast schedule message, which forces data-collection nodes to remove accumulative clock-drifts and to reestablish matching schedules.
Leveraging the property of broadcast, schedule messages can reach all data-collection nodes at the same time once ignoring the difference of propagation time of them (it is reasonable since the propagation time within a cluster, which is between 0.1 and 1 microseconds).
To complete data collection, the nodes in two grids need to establish the path that can arrive at g u.
H x,y)∖(H x)+H y)) represents the correlation degree of data collection for ith node and the jth nodes, and K is the correlation coefficient.
In this article, we theoretically analyze the energy consumption of sensor nodes during data collection when the nodes are random deployed.
A Fast data collection for the node Faraway sink and Slow data collection for the node Close to sink.
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