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The sensing range is larger than ±9 g with a resolution of 2mg/√Hz.
Based on this designed two-round signal amplification strategy, both the sensing range and detection limit were greatly improved.
First, we consider a deterministic (or disk) sensing model, where the sensing range is modeled as a disk.
The sensing range is much larger than the transmission range.
Moreover, the sensing range has been set to R = 0.2.
In Figure 5, as we can see, the network lifetime keeps increasing until the sensing range reaches 30, after that, it decreases as the sensing range further increases.
Any point within the sensing range of a sensor can be detected by the sensor.
However, Round-based and Single-MC algorithms require more messages when the sensing range increases.
On one hand, the longer the sensing range, fewer messages are needed to find an MC.
The farthest point p2 of g2 is within the sensing range of a1.
In other words, each sensor has the sensing range with the mean value.
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