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The sensing range is defined as the maximum distance between two nodes, such that a signal transmitted by one node can be received by the other node, but cannot be decoded correctly.
The transmission range is the maximum distance between two nodes, such that a signal transmitted by one node can be received by the other node and can be decoded correctly.
To define the shortest path problem we can briefly say that it is the methodology of finding a path between two nodes such that the sum of the weights of its constituent edges is minimized.
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The propagation delay is related to the distance between the two nodes such that, where is the distance between nodes and and is the speed of light.
The overall delay between two nodes exchanging such time-stamped packets is, therefore, the time interval between when the sender time is clocked and when the receiver node decodes this time information from its received packet [9].
Although this article utilizes the estimated distance between two nodes, other metrics such as link quality, residual energy can also be combined.
In many cases, the shortest path between two nodes will logically traverse such hub(s).
Each edge can have weight, such as the distance between two nodes related to the corresponding edge.
A wireless communication link corresponds to an edge between two nodes and is described by the ordered pair such that transmits information directly to.
We set p l = α 1 - α ( R d - 1 ) such that a longer distance between two nodes has a lower probability to form a direct communication link.
When delays are introduced, such as propagation delays, the coupling between two nodes and is delayed by.
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