A low-power and micro-power wireless networking and data forwarding method
A technology of wireless networking and forwarding methods, applied in power management, wireless communication, network topology, etc., can solve the problems that relay nodes and sub-nodes cannot communicate directly, increase wireless transmission distance, solve communication dead ends, and communicate in real time good sex effect
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Embodiment 1
[0055] Embodiment 1: A method for networking and data forwarding based on low-power micro-power wireless, which includes low-power sleep wake-up, networking beacon frame forwarding, node information collection, network configuration management, and data forwarding based on sleep wake-up copying strategies.
[0056] In this embodiment, the data information of water, gas and heat meters are gathered to the central node through low-power sleep wake-up, networking beacon frame forwarding, node information collection, network configuration management, and data forwarding and reading based on sleep wake-up. , and then sent to the concentrator and the master station through the uplink protocol.
Embodiment 2
[0057] Embodiment 2: A low-power micro-power wireless networking and data forwarding method as described in Embodiment 1, the low-power sleep wake-up, networking beacon frame forwarding process is:
[0058] a. The central node sends a wake-up packet, and then sends a networking beacon frame, which contains information such as the number of relay node time slots, the number of child node time slots, and the number of working channels;
[0059]b. The relay node self-awakens and receives the wake-up packet within the self-wake-up dormancy interval, waits for N wake-up packet cycles and then receives the networking beacon frame, according to the number of relay node time slots or sub The modulus of the number of node time slots and its own short address can obtain the corresponding forwarding time slot, and obtain the working channel in the networking beacon frame, and perform frequency hopping reception on the working channel and maintenance channel. The maximum timeout time for f...
Embodiment 3
[0067] Embodiment 3: A low-power micro-power wireless networking and data forwarding method as described in Embodiment 2. During the low-power sleep and wake-up process, the central node selects a superframe structure, according to the number of relay nodes and child nodes , to draw a range for the time of the channel; the forwarding time slot interval and the number of time slots of the relay node and the sub-node are specified in the super frame; the super frame is bounded by the transmission of the networking beacon frame.
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