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The depletion of sensor revealed by signal amplitudes is consistent with the one revealed by I V curve.
The topology discovery is performed periodically in order to track topology changes occurring due to the energy depletion of sensor nodes.
However, due to the depletion of sensor energy, the position of selected CHs might not be always within the suitable region, yet assuming ideal behavior we can approximate the actual performance.
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where ρ i is the node density of corona C i. Sensors in corona C n only need to send their own sensing messages, so the energy depletion of sensors in corona C n is Ē n = A n ⋅ e 1 / N n = e 1 / ρ n (7).
The constraint (9) essentially limits the energy expended by each sensor in each detection cycle to avoid fast depletion of the sensor energy.
The battery depletion of the sensor nodes randomly deployed in critical areas may negatively interfere with part or all of the network communication and may cause the life of the entire network to terminate.
The tested parameters include the threshold and noise behaviour of the chip, the response to light emitting diode (LED) light, the demagnification of the electron optics, the leakage current and the depletion of the silicon sensor, the quality of the vacuum, the signal efficiency and the dark count rate.
Accordingly, the present study proposes four tuple dispatching schemes for distributing the tracked information amongst the sensors in such a way as to mitigate the effects of sensor energy depletion, namely sequential dispatching, sequential dispatching with overlap, fixed distance dispatching, and balanced incomplete block dispatching.
This uneven energy depletion, known as the hot spot problem [1], drastically reduces the lifetime of sensor networks.
This uneven energy depletion phenomenon known as the hot spot problem becomes more serious as the number of sensor nodes (i.e., their scale) increases.
It has been noted that upon Ca2+-depletion, IP3R, a sensor of Ca2+-load of ER, directly interacts and props the TRP3PM channel open by the so-called "store operated Ca2+-entry" mechanism.
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