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An Improved Buck-Boost Converter Based on Pulse Sequence Control

机译:一种基于脉冲序列控制的改进的降压 - 升压转换器

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Buck-Boost converters can achieve step-up and step-down easily and have been widely used in many applications because of the simple topology, easy control and can input current continuously, etc. Meanwhile, the conventional pulse width modulation (PWM) control method owns excellent steady state performance, but it cannot avoid slow transient response and difficult compensation network design. Thus, this paper combines an improved topology and a simple pulse sequence (PS) control technique to improve the performance of the system from the following three aspects. First, PS instead of PWM control technique is applied to improve the dynamic response and avoid the compensation link. Second, an improved Buck-Boost converter is put forward to effectively inhibit the low-frequency fluctuation of the PS control method when the inductor is operating in continuous conduction mode (CCM). Third, the proposed converter can achieve current sharing and reduce the energy loss of the inductor. In addition, there is almost no increase for the cost and volume. The simulation results are provided to verify the theoretical analysis.
机译:Buck-Boost转换器可以轻松实现升级和降压,并且由于简单的拓扑,易于控制,并且可以连续输入电流等,因此在许多应用中被广泛使用。同时,传统的脉冲宽度调制(PWM)控制方法拥有出色的稳态性能,但它无法避免慢速瞬态响应和困难的补偿网络设计。因此,本文结合了改进的拓扑和简单的脉冲序列(PS)控制技术,从以下三个方面提高了系统的性能。首先,应用PS而不是PWM控制技术来提高动态响应并避免补偿链路。其次,当电感器以连续导通模式(CCM)操作时,提出了一种改进的降压 - 升压转换器以有效地抑制PS控制方法的低频波动。第三,所提出的转换器可以实现电流共享并降低电感器的能量损失。此外,成本和体积几乎没有增加。提供了仿真结果以验证理论分析。

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