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Electric hoists represent their own machinery, strength, and toughness, while the stage is elegant, flowing, and soft, with conflicts and collisions between the two.
The traditional operation of stage electric hoists mainly relies on manual labor, making it difficult to achieve precise position and speed control. The numerical control system can achieve precise co
Category : W12 Stage Electric Hoist
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1、 The Importance of Numerical Control System for Stage Electric Gourd
(1) Precise control
The traditional operation of stage electric hoists mainly relies on manual labor, making it difficult to achieve precise position and speed control. The numerical control system can achieve precise control of the electric hoist through programming, ensuring accurate positioning and movements of the stage equipment, greatly improving the quality of stage performances.
(2) Efficient operation
The CNC system can achieve synchronous operation of multiple electric hoists, greatly improving the efficiency of stage construction and equipment adjustment. At the same time, operators can easily control multiple electric hoists through the console, reducing labor costs and operational difficulty.
(3) Safe and reliable
The stage electric hoist CNC system is usually equipped with various safety protection devices, such as overload protection, limit protection, etc., which can effectively prevent accidents from occurring. In addition, the CNC system can also monitor the operation status of the electric hoist in real time, detect and solve problems in a timely manner, and ensure the safety of stage performances.
2、 Construction steps of CNC system for stage electric hoist
Hardware device selection
(1) Electric hoist: Choose stage electric hoists with high precision and reliability to ensure they can meet the needs of stage performances.
(2) Controller: Choose a powerful and stable CNC controller that can achieve precise control of multiple electric hoists.
(3) Sensors: Install position sensors, speed sensors, etc. to monitor the real-time operation status of the electric hoist and provide accurate data for the CNC system.
(4) Communication equipment: Choose reliable communication equipment to ensure smooth communication between the CNC system and the control console.
Software system development
(1) Programming environment: Choose a suitable programming environment, such as C++, Python, etc., to develop control programs for CNC systems.
(2) Control algorithm: Design a reasonable control algorithm to achieve precise control of the electric hoist. For example, PID control algorithm can be used to adjust the speed and position of the electric hoist in real time based on sensor feedback data.
(3) Human Machine Interface: Develop a user-friendly interface to facilitate operators in operating and monitoring the CNC system. The human-machine interface should have intuitive graphic display, convenient operation buttons, and other functions.
System debugging and optimization
(1) Hardware debugging: Debugging the hardware equipment of the CNC system to ensure that the connections between various devices are normal and communication is smooth.
(2) Software debugging: Debug the control program of the CNC system to ensure precise control of the electric hoist. It is possible to debug and continuously optimize control algorithms and parameters by simulating stage performance scenes.
(3) System optimization: During the debugging process, continuously identify and solve problems, and optimize the CNC system. For example, communication protocols can be optimized to improve communication speed and stability; Control algorithms can be optimized to improve control accuracy and response speed.
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