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Digital Design Technology and Its Application of Servo Device

机译:数字设计技术及其伺服装置的应用

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In order to solve the traditional design mode of the device with high cost, long cycle and poor quality problems, by using the digital design method, some researches on the design, virtual prototype and function analysis, control strategy of key technology for servo device and their applications, are carried out. According to the demand analysis, the preliminary design of servo device is made; application of optimization algorithm to optimize the layout of pitch drive system is made. After optimization, the optimized electric cylinder maximum force decreases 28%; the minimum transmission angle is increased by 30%. A servo device virtual prototype model is built to achieve the goal of displacement, design of the control system. Through the simulation of virtual prototype and the physical prototype servo control test, the correctness of the virtual prototype model and the feasibility of the function are verified. The results show that the scheme of the system optimization technology, virtual prototype technology, modern control methods of complex mechanical system digital design technology, can realize the process of new product design digital, shorten the product development cycle and improve product performance.
机译:为了解决具有高成本,长周期和质量差的设备的传统设计模式,通过使用数字设计方法,一些研究设计,虚拟原型和功能分析,伺服装置关键技术的控制策略他们的应用程序是进行的。根据需求分析,伺服装置的初步设计是制造的;优化算法在优化俯仰驱动系统布局中的应用。优化后,优化的电气缸最大力减少28%;最小传输角度增加30%。建立伺服设备虚拟原型模型,以实现位移,控制系统的设计目标。通过模拟虚拟原型和物理原型伺服控制测试,验证了虚拟原型模型的正确性和功能的可行性。结果表明,该系统优化技术的方案,虚拟原型技术,复杂机械系统数字设计技术的现代控制方法,可实现新产品设计的过程,缩短产品开发周期,提高产品性能。

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