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Online Estimation of the Current Ripple on a Saturating Eerrite-Core Inductor in a Boost Converter

机译:Boost转换器中饱和铁氧体磁芯电感器上的电流纹波的在线估计

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摘要

In this paper, a nonlinear observer is proposed for the estimation of the current ripple in a ferrite-core inductor working in partial saturation, mounted on a boost converter. The estimator is based on a recently proposed nonlinear inductance model, which expresses the inductance as a function of the inductor current, taking into account also the non-negligible effects of the core temperature. The proposed observer is implemented on a low-cost microcontroller and tested, both offline and online, on a real boost converter with different operating conditions. The offline tests show a satisfactory estimation accuracy both during the electrical (fast) and thermal (slow) transients. Due to the high microcontroller latency, some delays and inaccuracies occur during electrical transients in the online tests. This work suggests that, in order to exploit the observer for control purposes, the target architecture should be a high-performance microcontroller, a system-on-chip, or a field programmable gate array, where parallelism can be exploited to speed-up the computations. The proposed implementation can be instead suitable for switch-mode power supply (SMPS) monitoring purposes.
机译:在本文中,提出了一种非线性观测器,用于估算安装在升压转换器上的部分饱和工作的铁氧体磁芯电感器中的电流纹波。估算器基于最近提出的非线性电感模型,该模型将电感表示为电感电流的函数,同时还考虑了铁心温度的不可忽略的影响。建议的观察器在低成本微控制器上实现,并在具有不同工作条件的真实升压转换器上进行离线和在线测试。离线测试在电(快速)和热(慢)瞬变期间均显示令人满意的估计精度。由于微控制器的高延迟,在线测试中的电气瞬变过程中会出现一些延迟和不准确性。这项工作表明,为了将观察者用于控制目的,目标体系结构应该是高性能微控制器,片上系统或现场可编程门阵列,在其中可以利用并行性来加快处理速度。计算。所提出的实现方式可以替代地适合于开关模式电源(SMPS)监视目的。

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