Chain topology wireless communication system for bridge intelligent health monitoring system
A monitoring system, intelligent health technology, applied in the direction of wireless communication, transmission system, network topology, etc., can solve the problems of slow detection speed, difficulty in fully reflecting the quality of the bridge as a whole and various parts, and human factors. Diversification, long-term monitoring, and information-rich effects
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Embodiment 1
[0020] Such as figure 1 As shown, a chain topology wireless communication system for a bridge intelligent health monitoring system includes multiple vibration nodes 1, stress and strain nodes 2, displacement nodes 3, and smart bridge nodes 4. Multiple vibration nodes 1, stress and strain Node 2 and Displacement Node 3 are installed on the surface of the bridge span structure, support, abutment or pier respectively to monitor the vibration information of the bridge structure, including the amplitude, wave type, frequency or period, damping and dynamic load of the bridge structure Maximum amplitude and impact coefficient information; stress strain and temperature information, including the load distribution coefficient of the bridge structure, the transfer of secondary stress, the state of stress concentration, the stress distribution of the bridge deck and its interaction with the main beam, and the external temperature of the structure Information; Displacement information, incl...
Embodiment 2
[0026] Such as figure 2 As shown, the chain topology wireless communication system for the bridge intelligent health monitoring system includes a number of vibration nodes 1, a stress and strain node 2, a displacement node 3, and an intelligent bridge node 4. Vibration node 1 is a low-power wireless vibration sensing communication device installed on the surface of the bridge abutment to detect the vibration signal of the bridge abutment. The nodes are laid out in a chain topology and relay information. The vibration information is transmitted through BLE wireless communication technology. Information including amplitude, wave type, frequency or period, damping, and maximum amplitude and impact coefficient under dynamic load are sent to smart bridge node 2. Stress-strain node 2 is a low-power wireless stress-strain sensor communication device, Installed on the surface of the bridge abutment to detect the stress, strain and temperature signals of the abutment. The nodes are arra...
Embodiment 3
[0028] Such as image 3 As shown, the chain topology wireless communication system for the bridge intelligent health monitoring system includes a number of vibration nodes 1, a stress and strain node 2, a displacement node 3, and an intelligent bridge node 4. Vibration node 1 is a low-power wireless vibration sensing communication device installed on the surface of the bridge pier to detect the vibration signal of the bridge pier. The nodes are arranged in a chain topology and relay information. The vibration information, including amplitude, is transmitted through WIFI wireless communication technology. , Wave type, frequency or period, damping, and maximum amplitude and impact coefficient under dynamic load, which are sent to smart bridge node 2; stress-strain node 2 is a low-power wireless stress-strain sensor communication device installed in The bridge surface detects the stress, strain and temperature signals of the bridge surface. The nodes are laid out in a chain topolog...
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