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Wi-Fi-based wave water tank wireless wave generation system
The invention provides a Wi-Fi-based wave water tank wireless wave generation system, which comprises a Wi-Fi receiving module, a relay, a frequency converter, a servo motor and a wave pushing plate,wherein the Wi-Fi receiving module, the relay, the frequency converter, the servo motor and the wave pushing plate are connected in sequence, the wave pushing plate is connected with the servo motor through a lead screw, the relay controls the frequency converter to drive the servo motor to drive the wave pushing plate to generate waves, and the Wi-Fi receiving module receives wireless signals sent by mobile phone APP software. The Wi-Fi-based wave water tank wireless wave generation system can control the servo motor to generate waves at different frequencies in a wireless manner, ensures continuity and reliability of related teaching activities of a wave water tank, and can be widely applied to teaching activities of the wave water tank. According to the Wi-Fi-based wave water tank wireless wave generation system, the relay is integrated on one circuit board and is connected to the frequency converter through a cable pipe, the relay calls 16 sections of preset frequencies by controlling switching on and off of four multifunctional input terminals of the frequency converter, so as to control the servo motor to rotate, and the wave pushing plate converts rotating motion of the servo motor into horizontal motion through the lead screw so as to push a water body to generate waves.
一种基于Wi‑Fi的的波浪水槽无线造波系统,包括Wi‑Fi接收模块、继电器、变频器、伺服电机和推波板;所述Wi‑Fi接收模块、继电器、变频器、伺服电机和推波板依次连接,推波板与伺服电机通过丝杠连接,继电器控制变频器驱动伺服电机带动推波板造波,所述Wi‑Fi接收模块接收手机APP软件发送的无线信号。本发明能够无线控制伺服电机以不同的频率造波,保证了波浪水槽相关教学活动的连续性和可靠性,可广泛用于波浪水槽的教学活动中。本发明中的继电器整合于一块电路板上,通过电缆管连接至变频器,继电器通过控制变频器四个多功能输入端子的开闭来调用16段预设频率,从而控制伺服电机转动,推波板通过丝杠将伺服电机的旋转运动转换为水平运动,推动水体造波。
Wi-Fi-based wave water tank wireless wave generation system
The invention provides a Wi-Fi-based wave water tank wireless wave generation system, which comprises a Wi-Fi receiving module, a relay, a frequency converter, a servo motor and a wave pushing plate,wherein the Wi-Fi receiving module, the relay, the frequency converter, the servo motor and the wave pushing plate are connected in sequence, the wave pushing plate is connected with the servo motor through a lead screw, the relay controls the frequency converter to drive the servo motor to drive the wave pushing plate to generate waves, and the Wi-Fi receiving module receives wireless signals sent by mobile phone APP software. The Wi-Fi-based wave water tank wireless wave generation system can control the servo motor to generate waves at different frequencies in a wireless manner, ensures continuity and reliability of related teaching activities of a wave water tank, and can be widely applied to teaching activities of the wave water tank. According to the Wi-Fi-based wave water tank wireless wave generation system, the relay is integrated on one circuit board and is connected to the frequency converter through a cable pipe, the relay calls 16 sections of preset frequencies by controlling switching on and off of four multifunctional input terminals of the frequency converter, so as to control the servo motor to rotate, and the wave pushing plate converts rotating motion of the servo motor into horizontal motion through the lead screw so as to push a water body to generate waves.
一种基于Wi‑Fi的的波浪水槽无线造波系统,包括Wi‑Fi接收模块、继电器、变频器、伺服电机和推波板;所述Wi‑Fi接收模块、继电器、变频器、伺服电机和推波板依次连接,推波板与伺服电机通过丝杠连接,继电器控制变频器驱动伺服电机带动推波板造波,所述Wi‑Fi接收模块接收手机APP软件发送的无线信号。本发明能够无线控制伺服电机以不同的频率造波,保证了波浪水槽相关教学活动的连续性和可靠性,可广泛用于波浪水槽的教学活动中。本发明中的继电器整合于一块电路板上,通过电缆管连接至变频器,继电器通过控制变频器四个多功能输入端子的开闭来调用16段预设频率,从而控制伺服电机转动,推波板通过丝杠将伺服电机的旋转运动转换为水平运动,推动水体造波。
Wi-Fi-based wave water tank wireless wave generation system
一种基于Wi-Fi的波浪水槽无线造波系统
JIANG XUELIAN (author) / FEI XIANG (author) / JI ZIFAN (author) / ZHAO YUE (author) / ZHU YIFENG (author)
2020-10-30
Patent
Electronic Resource
Chinese
IPC:
G01M
TESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES
,
Prüfen der statischen oder dynamischen Massenverteilung rotierender Teile von Maschinen oder Konstruktionen
/
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
/
G08C
Übertragungssysteme für Messwerte, Regel-, Steuer- oder ähnliche Signale
,
TRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
/
G09B
Unterrichts- oder Vorführungsgeräte
,
EDUCATIONAL OR DEMONSTRATION APPLIANCES
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