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Voltage and Current-Mode Control for a Buck-Converter based on Measured Integral Values of Voltage and Current Implemented in FPGA

机译:基于在FPGA中实现的基于测得的电压和电流积分值的Buck转换器的电压和电流模式控制

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This paper describes a complete digitally controlled dc–dc buck converter performed by field-programmable gate array (FPGA) circuitry. The voltage and current-mode control is based on a voltage control oscillator (VCO) performed measurements regarding output-voltage and inductor current, respectively. This measurement principle also uses digital-counters (digital-integrators) in order to obtain integral values for the output-voltage and inductor current. In analog current-mode control, the instantaneous inductor current-value-measurement is used for the switching action. When the VCO is used for the inductor current measurement, the integral is measured during the switching-on time set as an observation interval and the switching action occurs based on this measurement. Such a principle enables full digitalization of the voltage- and current-control loop and also the used measurement principle is capable of rejecting the switching disturbances during current and voltage measurements. All the tasks for current and voltage control were implemented within the FPGA. The algorithm was verified by simulation and experimentation at a switching-frequency of $hbox{25 }$kHz.
机译:本文介绍了由现场可编程门阵列(FPGA)电路执行的完整的数控DC-DC降压转换器。电压和电流模式控制分别基于电压控制振荡器(VCO)进行的有关输出电压和电感器电流的测量。此测量原理还使用数字计数器(数字积分器),以获得输出电压和电感器电流的积分值。在模拟电流模式控制中,瞬时电感电流值测量用于开关动作。当使用VCO进行电感器电流测量时,在设置为观察间隔的接通时间期间对积分进行测量,并基于该测量发生开关动作。这样的原理使得电压和电流控制回路能够完全数字化,并且所使用的测量原理还能够抑制电流和电压测量期间的开关干扰。电流和电压控制的所有任务均在FPGA中实现。通过仿真和实验以 $ hbox {25} $ kHz的开关频率对算法进行了验证。

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