高频双有源桥式变换器数字控制设计的离散时间框架

Avishek Pal, S. Kapat, K. Jha, A. Tiwari
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引用次数: 6

摘要

双有源桥式(DAB)变换器在高频固态变压器领域得到了越来越广泛的应用。然而,为了在均匀采样条件下设计高性能稳定的数字控制,DAB变换器的建模仍然是一个挑战。本文提出了一种考虑各种实际寄生的近似离散时间模型的离散时间框架。这些模型用于在电压模式和电流模式控制技术下推导相移调制下的各种离散时间小信号传递函数。通过SIMPLIS仿真验证了所提模型的准确性,并利用SIMPLIS仿真进行了时域和频域实验。最后,对一个额定功率为50 W、开关频率为500 kHz的移相调制下的DAB转换器原型进行了数字电压模式控制的设计案例研究。利用FPGA器件实现了数字控制器,并对测试结果进行了验证。提出的框架可以扩展到不同的调制技术以及其他隔离DC-DC转换器拓扑,以设计高频数字控制。
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Discrete-time framework for digital control design in a high-frequency dual active bridge converter
Dual active bridge (DAB) converters have been gaining increasing popularity in the context of high-frequency solid state transformers. However, modeling of a DAB converter remains a challenge to retain the ripple information for the design of high performance stable digital control under uniform sampling. This paper proposes a discrete-time framework using approximate discrete-time models considering various practical parasitics. These models are used to derive various discrete-time small-signal transfer functions under phase shift modulation using both voltage mode and current mode control techniques. The accuracy of the proposed models is verified through SIMPLIS simulation as well as experimentation in time-domain and in the frequency domain using SIMPLIS simulation. Finally, a design case-study using digital voltage-mode control is considered for a prototype DAB converter under phase-shift modulation with a power rating of 50 W and switching frequency of 500 kHz. The digital controller is implemented using an FPGA device, and the test results are demonstrated. The proposed framework can be extended to different modulation techniques as well as other isolated DC-DC converter topologies to design high frequency digital control.
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