Perancangan Rangkaian Forward-Reverse pada Motor 3 Fasa

Satria Musthoffa Addiwani, Ananda Yhuto Wibisono Putra
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Abstract

Electricity is a modern-day invention that has become the driving force behind the majority of industries. The 3-phase motor system includes it. The 3-phase motor system is an electrical device-owned system that converts electrical energy into mechanical energy. The purpose of this research is to complete the development of a forward-reverse control system using a three-phase motor and to determine the feasibility test results for a three-phase motor system trainer with a forward-reverse circuit. Data collection techniques were used in conjunction with data analysis of experimental results using qualitative descriptive techniques. This method is used by describing the entire series. This technique is carried out by describing the entire series of research flows beginning with the analysis of tool and material needs, design of control systems, realization of control systems, testing of control systems, and results of testing of control systems. The study's findings indicate that creating a system using a 3-phase induction motor, which is commonly used in various industries for production purposes, can increase the practical ease of use in distributing AC power to the system. Furthermore, the implementation of this 3-phase motor can control electricity effectively. Because its components are highly efficient, a three-phase motor is used. Using a PLN voltage source. Stripping pliers and cable cutters, a digital multimeter, and one set of screwdrivers were used. There are several buttons (buttons), and when the forward button is pressed, the voltage is distributed to the magneticcontractor forward, and the induction motor rotates forward. When the reverse button is pressed, themagnetic contractor reverses; if it is already in operation, the motor moves in the opposite direction.
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三相电机正反转电路设计
电是一项现代发明,它已成为大多数工业背后的推动力。三相电机系统包括它。三相电机系统是一种将电能转化为机械能的电气设备自有系统。本研究的目的是完成使用三相电机的正反控制系统的开发,并确定具有正反电路的三相电机系统训练器的可行性测试结果。数据收集技术与使用定性描述技术对实验结果进行数据分析相结合。这种方法是通过描述整个系列来使用的。该技术通过描述从工具和材料需求分析、控制系统设计、控制系统实现、控制系统测试和控制系统测试结果开始的整个系列研究流程来实现。研究结果表明,使用三相感应电动机创建系统(通常用于各种工业生产目的)可以增加分配交流电源到系统的实际易用性。此外,该三相电机的实现可以有效地控制电力。因为它的组件效率很高,所以使用三相电机。使用PLN电压源。使用剥线钳、断线钳、数字万用表、螺丝刀一套。有几个按钮(按钮),当按下前进按钮时,电压正向分布到磁性承包商,感应电动机向前旋转。当反向按钮被按下时,磁性承包商反转;如果它已经在运行中,则电机向相反方向移动。
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