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A novel current estimation technique for digital controlled switching converters operating in CCM and DCM

机译:用于CCM和DCM的数字控制开关转换器的新型电流估算技术

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Inductor current in the high speed switching converters is used as a feedback signal for current mode control and over current fault protection. Sensing inductor current for the use of digital controllers require high bandwidth current sensors and also need high speed Analog to Digital Converter (ADC) to convert the sensed current into digital domain. Use of high bandwidth current sensors and high speed ADCs make the sensing costly and complimented. Hence, eliminating current sensor and ADCs is in the interest of the present day research. These can be eliminated by estimating inductor current instead of sensing it. The estimation process uses converter voltages easily sensed using slow ADCs. This paper proposes a novel high bandwidth digital inductor current estimation technique which using low cost comparators. This technique estimates both DC and switching frequency components of the inductor current. The estimation is accurate to 9 % of the actual current irrespective of the converter operating in Continuous or Discontinuous Conduction Mode (CCM/DCM). The theory and its practical implementation procedures are given in detail. The proposed theory is validated with the experimental results on a 98 kHz, 3.3 V / 10 A buck converter working in CCM and DCM.
机译:高速开关转换器中的电感器电流用作电流模式控制和过流故障保护的反馈信号。用于数字控制器的感应电感器电流需要高带宽电流传感器,并且还需要高速模数转换器(ADC)才能将感应到的电流转换为数字域。高带宽电流传感器和高速ADC的使用使传感成本高昂,值得称赞。因此,消除电流传感器和ADC是当今研究的兴趣所在。可以通过估算电感器电流而不是对其进行感测来消除这些问题。估算过程使用的转换器电压很容易被慢速ADC感测到。本文提出了一种使用低成本比较器的新型高带宽数字电感器电流估计技术。该技术估算电感电流的直流分量和开关频率分量。不管转换器在连续或非连续导通模式(CCM / DCM)下运行,该估算值都精确到实际电流的9 \%。详细介绍了该理论及其实际实现过程。在CCM和DCM上工作的98 kHz,3.3 V / 10 A降压转换器上的实验结果验证了所提出的理论。

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