Intelligent tower crane system and operating method thereof
A working method and intelligent tower technology, applied in the direction of load hanging components, safety devices, cranes, etc., can solve the problems of low support, monotony, operator proficiency and high requirements for operation accuracy, and achieve the improvement of intelligence Effect
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Embodiment 1
[0022] Such as figure 1 with figure 2 As shown, the present embodiment 1 provides an intelligent tower crane system, including: a boom 1, a control unit, a hook unit 2 and a beacon generator 3 located in the loading and unloading operation area; wherein the control unit is installed in the tower crane operation room 13, and is used to control the boom 1 and the hook unit 2; the hook unit 2 includes: a safety distance detection unit, an audible and visual alarm unit; and the hook unit communicates with the beacon through the safety distance detection unit When the distance is lower than the limit value, the sound and light alarm unit will give an alarm and send the alarm signal to the control unit.
[0023] The limit value includes a safe distance, and is located within the safe distance to set a dangerous range. The controller is also connected to an alarm module, and after the distance enters the safe distance range, the first-level alarm signal is issued by the sound and l...
Embodiment 2
[0036] On the basis of embodiment 1, this embodiment 2 provides a working method of the intelligent tower crane system, wherein the hook unit measures the distance in real time through the safety distance detection unit and the beacon generator, when the distance is lower than the limit value , the sound and light alarm unit will alarm and send the alarm signal to the control unit.
[0037] The control unit includes: a controller, a keyboard unit connected to the controller, and a manipulation action collection unit; wherein the keyboard unit is suitable for inputting lifting instructions; the manipulation movement collection unit is suitable for recording The hoisting trajectory of the main body of the tower crane and the hook unit.
[0038] The control action acquisition unit includes: a geomagnetic sensor used to detect the steering of the boom, a first photoelectric rotary encoder installed in the luffing mechanism, to collect the traveling distance of the trolley correspo...
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