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FPGA Implementation of Passivity-Based Control and Output Load Algebraic Estimation for Transformerless Multilevel Active Rectifier

机译:FPGA实现无线控制的控制和输出负载代数估计变形无变压器多级活动整流器

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This paper presents the design and embedded implementation of a robust controller for the transformerless multilevel active monophase rectifier. In order to reduce the effects caused by the uncertainty originated by the output load, an algebraic estimator is devised. Then, a linear controller based on the exact static error dynamics passive output feedback (ESEDPOF) is proposed, where the uncertainty estimation is taken into account. Since the controller estimator is based on the continuous-time plant model, its real-time implementation on a digital platform requires a discretization of the controller under sufficiently fast sampling, such that the properties of the closed-loop nonlinear sampled-data system are preserved. For this reason, the medium-scale field-programmable gate array Spartan-6 XC6SLX16 is used for implementing the ESEDPOF controller, the online algebraic estimator, the enhanced phase-locked loop, and the multilevel pulsewidth modulator. The parallel processing provided by these devices and the capability in the design of custom modules allow optimizing the hardware description and obtaining an update time for the control law of 9.683 mu s. Experimental validation shows an excellent dynamical performance and a near-unity power factor.
机译:本文介绍了无变压器多级活动单相整流器的设计和嵌入式控制器。为了减少由输出负荷的不确定性引起的效果,设计了代数估计器。然后,提出了一种基于精确的静态误差动态无源输出反馈(ESEDPOF)的线性控制器,其中考虑了不确定性估计。由于控制器估计器基于连续时间工厂模型,因此在数字平台上的实时实现需要在足够快的采样下的控制器的离散化,使得闭环非线性采样数据系统的特性被保留。因此,中型现场可编程门阵列Spartan-6 XC6SLX16用于实现ESEDPOF控制器,在线代数估计器,增强型锁相环和多级脉冲宽度调制器。这些器件提供的并行处理和定制模块的设计中的能力允许优化硬件描述并获得控制定律的硬件描述,并获得9.683 mu s的更新时间。实验验证显示出优异的动态性能和近乎统一功率因数。

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