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储能系统技术 储能系统 ★ 5.0

基于最优注入频率选择的降压变换器在线电容监测方法

Injection-Based Online Capacitance Monitoring With Optimal Selection of Injection Frequency in Buck Converters

作者 Xinguo Zhang · Kang Yue · Haoyu Wang · Junrui Liang · Yu Liu
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2024年5月
技术分类 储能系统技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 铝电解电容器 电容监测 Buck变换器 电容估计 特征注入频率
语言:

中文摘要

铝电解电容的老化会导致电容值下降,影响开关电源的安全运行。本文提出一种高精度的降压变换器在线电容监测方法,无需特定电路工作条件,亦无需在时域内建模复杂电路动态。考虑测量误差,文章从数学上证明电容估计误差最小时具有最大灵敏度。通过向开关占空比注入特定频率的小信号扰动,在不中断系统正常运行的前提下获取电容估计所需信息。为实现最优估计灵敏度,选取基于电容估计传递函数的特征频率作为注入频率,并比较不同传递函数候选方案以最小化估计误差。仿真与硬件实验验证了在特征注入频率下可实现最佳参数灵敏度,且电容值能被准确估计。

English Abstract

The aging process of aluminum electrolytic capacitors leads to a reduction in capacitance, which affects the safe operation of switching power converters. This article proposes an online capacitance monitoring method of Buck converters with high capacitance estimation accuracy. The proposed method does not ask for specific operating condition of the circuit, and does not need to model complex circuit dynamics in time domain. With the measurement errors considered, the article mathematically proves that the minimum error of capacitance estimation can be achieved with maximum sensitivity. Without interrupting the operation of the original system, a small disturbance with a certain frequency is injected to the duty cycle of the switches, to generate additional information for capacitance estimation. To achieve optimal sensitivity for capacitance estimation, the injection frequency is selected as the characteristic frequency based on the transfer function for capacitance estimation. Different candidates of transfer functions are also compared and evaluated to achieve minimum capacitance estimation error. Simulation and hardware experiments verify that optimal parameter sensitivity of capacitance can be achieved at the characteristic injection frequency, and the capacitance can be accurately estimated based on the proposed method.
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SunView 深度解读

该在线电容监测技术对阳光电源储能与光伏产品线具有重要应用价值。ST系列储能变流器和SG系列光伏逆变器的DC-Link电容是关键薄弱环节,传统离线检测需停机维护。该方法通过占空比注入小信号扰动,在不中断系统运行前提下实现电容实时监测,可直接集成到阳光电源现有DSP/FPGA控制平台。特征频率优化选择策略可提升iSolarCloud智能运维平台的预测性维护能力,在电容劣化达到故障阈值前提前预警更换,降低PowerTitan大型储能系统的非计划停机风险。该技术还可扩展至充电桩DC/DC模块,提升全产品线的可靠性与全生命周期运维效率。