Self-energy-supplying system for monitoring water quality of water area of scenic region
A monitoring system and self-supply technology, which is applied in the direction of measuring devices, electric vehicles, instruments, etc., can solve the problems of large volume of wind turbines and their ancillary equipment, and achieve guaranteed power supply, simple and compact structure, and sufficient converted power Effect
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Embodiment 1
[0032] like figure 1 , figure 2 and Figure 4 As shown: this embodiment provides a self-powered monitoring system for water quality in scenic waters, including a command center 1 and a monitoring terminal 2, the monitoring terminal 2 includes a carrying floating body 3, and a vibration power generation unit 4, a power supply is arranged inside the carrying floating body 3 The management unit 5 , the processor unit 6 and the wireless communication unit 7 , a solar power generation unit 8 is arranged above the carrying floating body 3 , a sensor unit 9 is arranged below the carrying floating body 3 , and the carrying floating body 3 is connected to the bottom of the water through a fixed rope body 10 , the vibration power generation unit 4 and the solar power generation unit 8 are connected to the power management unit 5 , and the power management unit 5 is connected to the processor unit 6 , the wireless communication unit 7 and the sensor unit 9 .
[0033]The present invent...
Embodiment 2
[0039] like figure 1 and figure 2 As shown: this embodiment also provides a self-powered monitoring system for water quality in scenic waters, including a command center 1 and a monitoring terminal 2, the monitoring terminal 2 includes a carrying floating body 3, and a vibration power generation unit 4, The power management unit 5, the processor unit 6 and the wireless communication unit 7, the solar power generation unit 8 is arranged above the carrying floating body 3, the sensor unit 9 is arranged below the carrying floating body 3, and the carrying floating body 3 is connected to the bottom of the water through the fixed rope body 10. The vibration power generation unit 4 and the solar power generation unit 8 are connected to the power management unit 5 , and the power management unit 5 is connected to the processor unit 6 , the wireless communication unit 7 and the sensor unit 9 .
[0040] The power management unit 5 includes a rectifier 18 , a battery 19 and a DC / DC po...
Embodiment 3
[0045] like Figure 1 to Figure 3 As shown: this embodiment also provides a self-powered monitoring system for water quality in scenic waters, including a command center 1 and a monitoring terminal 2, the monitoring terminal 2 includes a carrying floating body 3, and a vibration power generation unit 4, The power management unit 5, the processor unit 6 and the wireless communication unit 7, the solar power generation unit 8 is arranged above the carrying floating body 3, the sensor unit 9 is arranged below the carrying floating body 3, and the carrying floating body 3 is connected to the bottom of the water through the fixed rope body 10. The vibration power generation unit 4 and the solar power generation unit 8 are connected to the power management unit 5 , and the power management unit 5 is connected to the processor unit 6 , the wireless communication unit 7 and the sensor unit 9 .
[0046] The sealing mechanism 16 includes an annular sealing band 26 , the inner edge of th...
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