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Development and Practical Application of a Multifunctional Test Bench for Experimental Research of Precise Mechatronic Systems

机译:精密机电一体化系统实验研究多功能试验台的研制与实际应用

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Objectives: The aim of the project is to develop an experimental laboratory test bench for comprehensive practical research of various types of selective-invariant electromechanical systems as a part of their engineering design. Method: The experimental laboratory test bench implements the Rapid Control Prototyping technology permitting the creation and testing of new control algorithms in a short time. This technology makes it possible to rapidly check theoretical results and develop innovative technical solutions prepared for practical implementation in real production equipment. Findings: The developed test bench is implemented by using a personal computer with Windows operating system and MATLAB software package with Simulink simulation environment and a real-time library. It contains complete controlledvelocity electric drive with information signal sensors and a mechanical oscillation source of load torque on the electric drive shaft. Computer and electric drive are coordinated by means of a NI PCIe-6343 input-output circuit board with PCI Express interface. The application of a test bench for experimental research of adaptive-invariant mechatronic systems under close to real operating conditions is shown. To a large extent the results of the test bench research of mechatronic systems confirmed earlier results obtained by simulation and computing experiment methods. Improvements: The experimental laboratory test bench enables rapid modification of control devices structure and parameters, intensity and spectrum of load torque oscillations, composition of the electric drive being tested.
机译:目标:该项目的目的是开发一个实验实验室测试台,作为各种选择性恒定机电系统的综合实践研究,作为其工程设计的一部分。方法:实验实验室测试台采用快速控制原型技术,可在短时间内创建和测试新的控制算法。该技术可以快速检查理论结果并开发创新的技术解决方案,以便在实际生产设备中实际实施。结论:开发的测试平台是通过使用具有Windows操作系统的个人计算机以及带有Simulink仿真环境和实时库的MATLAB软件包来实现的。它包含带有信息信号传感器的完整的受控速度电驱动器,以及电驱动轴上负载扭矩的机械振荡源。计算机和电驱动器通过具有PCI Express接口的NI PCIe-6343输入输出电路板进行协调。展示了在接近实际运行条件下,试验台在自适应不变机电系统的实验研究中的应用。机电系统测试平台研究的结果在很大程度上证实了通过仿真和计算实验方法获得的早期结果。改进:实验实验室测试台可以快速修改控制设备的结构和参数,负载转矩振荡的强度和频谱,被测电驱动器的组成。

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