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Sensorless Self-Tuning Digital CPM Controller With Multiple Parameter Estimation and Thermal Stress Equalization

机译:具有多参数估计和热应力均衡的无传感器自调谐数字CPM控制器

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This paper introduces a practical sensorless average current-programmed mode controller for low-power dc–dc converters operating at high switching frequencies. The controller accurately estimates inductor currents and identifies main converter parameters. Namely, total conduction losses in each of the phases as well as the inductors and output capacitance values are identified. The estimate of the losses is used to monitor temperature of the components without costly thermal sensors and for current sharing based on thermal stress equalization increasing system reliability. The identified filter values are utilized in a transient-mode controller for obtaining response with virtually minimum output voltage deviation. The key element of the new controller is a self-tuning digital multiparameter estimator that operates on the inductor time-constant matching principle. It estimates the average inductor current over one switching cycle using an adaptive IIR filter and, in the same process, identifies other converter parameters. The operation of the controller is verified with a single-phase 12 to 1.5 V, 15 W and a dual-phase 12 to 1.8 V, 80 W buck converter prototypes operating at 500 kHz switching frequency. The results show that the controller estimates the current and temperature of the components with better than 10% accuracy, effectively equalizes phase temperatures, and provides virtually minimum output voltage deviation during load transients. The implementation also shows that the controller is well suited for on-chip implementation. Its full realization requires less than 16 000 logic gates and two relatively simple ADCs that, in a standard 0.18-μm CMOS process, can be implemented on a small silicon area, no larger than 0.6 mm$^2$ .
机译:本文介绍了一种实用的无传感器平均电流编程模式控制器,该控制器用于在高开关频率下工作的低功率dc-dc转换器。控制器可准确估算电感器电流并识别主转换器参数。即,识别每个相中的总传导损耗以及电感器和输出电容值。损耗的估计值可用于监视没有昂贵的热传感器的组件的温度,并基于热应力均衡来提高系统可靠性,从而实现电流共享。所识别的滤波器值在瞬态模式控制器中得到利用,以获得具有实际上最小的输出电压偏差的响应。新控制器的关键元件是一种基于电感器时间常数匹配原理的自整定数字多参数估计器。它使用自适应IIR滤波器估算一个开关周期内的平均电感器电流,并在同一过程中确定其他转换器参数。控制器的工作情况已通过在500 kHz开关频率下工作的12至1.5 V单相15 W和双相12至1.8 V 80 W降压转换器原型进行了验证。结果表明,该控制器以优于10%的精度估算组件的电流和温度,有效地均衡了相温度,并在负载瞬变期间提供了几乎最小的输出电压偏差。该实现还表明该控制器非常适合片上实现。它的全部实现需要少于16 000个逻辑门和两个相对简单的ADC,以标准的0.18μmCMOS工艺,可以在不大于0.6 mm 2的小硅面积上实现。

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