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Hardware in the loop simulation of direct synthesis based two degree of freedom PID control of DC-DC boost converter using Real Time Digital Simulation in FPGA

机译:基于FPGA实时数字仿真的直接合成基于二自由度PID控制的DC-DC升压转换器的硬件在环仿真

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The second order DC-DC boost converter is a non-minimum phase system as its control-to-output (c2o) transfer function contains a zero in the right half plane. This non-minimum phase behaviour poses several challenges to control design like initial inverse transient response to step changes, smaller bandwidth etc. Conventional One Degree of Freedom (1DOF) controllers, when applied to Pulse Width Modulated (PWM) boost type DC-DC converter suffer from the compromise that has to be made between the set-point response and disturbance rejection. The 2DOF-PID control scheme provides an extra degree of freedom to overcome above mentioned shortcoming. In 2DOF-PID, the feedback controller is designed through Direct Synthesis (DS) approach, where the controller transfer function is derived using Maclaurin series. Further, the rapid prototyping tools such as FPGA based Xilinx System Generator (XSG) facilitate quick realization of real time controllers before they are finally used for field testing. The results obtained by implementing controller in real time FPGA environment, using Hardware in the Loop (HIL) techniques, show the robustness of the presented control scheme to regulate the output voltage of boost DC-DC converter system.
机译:二阶DC-DC升压转换器是非最小相位系统,因为其控制输出(c2o)传递函数在右半平面中包含零。这种非最小的相位行为给控制设计带来了一些挑战,例如对阶跃变化的初始反向瞬态响应,较小的带宽等。传统的一自由度(1DOF)控制器,当应用于脉宽调制(PWM)升压型DC-DC转换器时在设定点响应和干扰抑制之间必须做出折衷。 2DOF-PID控制方案提供了额外的自由度,可以克服上述缺点。在2DOF-PID中,反馈控制器是通过直接合成(DS)方法设计的,其中控制器传递函数是使用Maclaurin系列推导的。此外,快速原型开发工具(例如基于FPGA的Xilinx系统生成器(XSG))有助于在最终用于现场测试之前快速实现实时控制器。通过使用硬件在环(HIL)技术在实时FPGA环境中实现控制器而获得的结果表明,所提出的控制方案可稳定升压DC-DC转换器系统的输出电压。

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