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Fruit conveyor prototype based on ball and beam system

机译:基于球梁系统的水果输送机原型

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This study investigates a high friction fruit conveyor system based on a traditional frictionless ball-and-beam system (BBS). Both share commonalities of behavior i.e. controlling an object by manipulating the platform angle. The BBS system includes a rubberised strip to make increase its friction slightly. The inherently unstable BBS is stabilised with a simple PID controller to permit system identification techniques. Various model structures have been identified but the state space model was ultimately selected for the design of an optimal controller. A camera vision system was used for sensing to keeping in line with the requirements of the fruit conveyor system. The results of simulation illustrate that the designed controller, based on the identified system model from experimental data, is satisfactory and can be used to develop a model that incorporates friction as will be the case in the fruit conveyor system.
机译:这项研究研究了基于传统的无摩擦球梁系统(BBS)的高摩擦力水果输送机系统。两者共享行为的共性,即通过操纵平台角度来控制对象。 BBS系统包括一个橡胶条,以使其摩擦稍有增加。固有的不稳定BBS通过简单的PID控制器进行稳定,以允许系统识别技术。已经确定了各种模型结构,但是最终选择了状态空间模型来设计最佳控制器。使用摄像头视觉系统进行感测,以使其与水果输送机系统的要求保持一致。仿真结果表明,基于从实验数据中识别出的系统模型,所设计的控制器是令人满意的,可用于开发包含摩擦的模型,就像在水果输送机系统中一样。

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