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On reception, the master node transmits its public key and requests the client node to switch channel and authenticate itself.
When there is burst data to the tag node, the master node transmits the synchronization signaling to the tag receiver and adjusts its phase step by step.
(1)In the first step of acquisition, the master node transmits periodic synchronization pulses with width that to the tag node.
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The master node uses Transmit Slot (TX), Receive Slot (RX), Receive to Synchronize (RXS) and Stand By slot (SB) [66] to transmit the patient's data as shown in Fig. 12 (re-drawn from [66]).
Assume to this end that all relays transmit on orthogonal channels to the master node, which again transmits on orthogonal channels back to the relays.
The master node M then transmits in timeslots until.
Energy consumption of master nodes successfully transmitting one data packet is as follows: {E}_{c2}=left[{P}_ttimes {T}_{cm}times frac{1}{p^2}+{P}_rtimes {T}_{cs}times frac{1}{p}+{P}_{id}times {t}_ctimes frac{1}{p}right] (16).
In case of packet loss, the master node would re-transmit the packet.
The main difference between the two steps is the widths of synchronization pulses transmitted by master node.
In a phase range acquired by first step, master node adjusts the phase of transmitting pulses by stepsize.
In the proposed two-step acquisition, the optimum pulse width transmitted by master node in the first step (12). is chosen by minimizing acquisition time.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com