带模拟PI控制器的宽负载范围Buck变换器的设计

Muskan Adeel, Umar Fayyaz, U. Rafi, Muhammad Umar Farooq
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引用次数: 0

摘要

高效降压变换器对于在广泛的电子设备和系统中实现最佳性能、可靠性和成本效益至关重要。Buck变换器广泛用于各种需要稳定的低压直流输出的应用中。设计一个高效的降压变换器需要在成本、性能、尺寸、重量和其他因素之间进行仔细的权衡。在本文中,Buck转换器的效率是通过使用运算放大器(Op-Amp)的PI控制器来提高的,也称为模拟PI控制器。并将所提出的模拟PI控制器模型与数字降压变换器的性能进行了比较。稳定控制系统应用于Buck变换器上,可使输出电压降低50%。该模型采用脉宽调制(PWM)来控制波形的变化。该设计在SIMULINK和PROTEUS8上进行了仿真,得到了相同的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a Buck Converter with an Analogue PI Controller for Wide Load Range Applications
Efficient buck converters are crucial for achieving optimal performance, reliability, and cost-effectiveness in a wide range of electronic devices and systems. Buck converters are widely used in a variety of applications where a stable, low-voltage DC output is required. Designing an efficient buck converter requires a careful balance of trade-offs between cost, performance, size, weight, and other factors. In this paper, the efficiency of the Buck converter is increased through the PI controller using an operational amplifier (Op-Amp), also known as an analog PI controller. The performance of the proposed model of the analog PI controller is further compared with the digital buck converter. The stable control system is applied on the Buck converter to decrease output voltage up to 50% w.r.t input voltage. Pulse width modulation (PWM) is used in the proposed model to control variations in waves. The design has been simulated at SIMULINK and PROTEUS8 with the same results.
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