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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Network Control System (NCS) for Performance Improvement of Dual Converter Power Supply System Using Adaptive Inverse Dynamic Mode (AIDMC) Control Technique
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Network Control System (NCS) for Performance Improvement of Dual Converter Power Supply System Using Adaptive Inverse Dynamic Mode (AIDMC) Control Technique

机译:网络控制系统(NCS)用于使用自适应逆动态模式(AIDMC)控制技术改进双转换器电源系统的性能

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摘要

With recent advances in power electronics, dual converter power supply based electric variable-speed drives are significantly used in many industries uses. Power electronic motor drivers are becoming able to efficiently read the inflexible characteristics of DC motor to prerequisites the load. By controlling the input armature voltage, the DC motor speed automatically changed. Half-bridge converter, semi converter, full bridge converter and dual converter are some of the thyristor controlled rectifier circuits are widely used in variable speed drives. In This work presents single phase dual converter power supply system based on adaptive inverse dynamic mode control (AIDMC) technique. The efficient dual converter control solution for industrial network control system (NCS) is proposed based on the industrial grade requirements, designed for low to high voltage operation. As the era of connecting the devices with the cloud is being increased gradually, the proposed method uses an NCS protocol for monitoring as well as controlling the dual converter system. The proposed method provides us the control over forward and reverse rotation, forward and reverse regeneration. From the simulation results, the proposed result offers variable DC voltage which is capable of four quadrant operation of the drive in a speed-torque plane by using MATLAB Simulink environment. A hardware setup also developed to validate the simulation. Over 96% accuracy achieved full load condition for proposed dual converter power supply system based on AIDMC controller.
机译:随着电力电子设备的最新进展,基于双转换器电源的电动变速驱动器在许多行业使用中显着使用。电力电子电机驱动器正越大,能够有效地读取DC电机的不灵活特性,以便对负载进行先决条件。通过控制输入电枢电压,直流电机速度自动改变。半桥转换器,半转换器,全桥转换器和双转换器是一些晶闸管控制整流电路广泛用于变速驱动器。在这项工作中,提出了基于自适应逆动态模式控制(AIDMC)技术的单相双转换器电源系统。基于工业级要求,提出了用于工业级要求的工业网络控制系统(NCS)的高效双转换器控制解决方案,设计用于低至高压操作。由于逐渐增加了与云的连接设备的时代,所提出的方法使用NCS协议进行监控以及控制双转换器系统。所提出的方法为我们提供了对向前和反向旋转,前进和反向再生的控制。从仿真结果中,所提出的结果提供了通过使用MATLAB Simulink环境在速度转矩平面中的驱动器的四象限操作的可变直流电压。硬件设置还开发用于验证模拟。基于AIDMC控制器的提出的双转换器电源系统实现超过96%的精度实现了完全负载条件。

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