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Ensuring minimum duration of transient processes in switched voltage regulators with digital control

机译:确保具有数字控制的开关电压调节器中的瞬态过程的最小持续时间

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摘要

This paper describes a solution suggested to minimize the finite transient duration of a switched voltage regulator (SVR) for step changes in load current. SVR control laws aimed at minimizing the transient time are synthesized, and the microprocessor-based architecture and operating algorithms of the control system are designed. The prototype of the SVRdigital control unit is implemented on the field-programmable gate array integrated circuit Cyclone III EP3C120F780 using the NIOS II soft-processor core. Embedded software is developed to calculate the control pulse duration for power switches in accordance with the synthesized control laws taking into account the feedback loop signal. A case study of theprototype shows that it provides the duration of transients caused by a load current step change, equal to 3-4 conversion periods at the frequency of 120 kHz. It confirms the suitability of the developed models, algorithms and control laws for ensuring the minimum transient duration.
机译:本文介绍了一种解决方案,建议最小化开关电压调节器(SVR)的有限瞬态持续时间,以实现负载电流的步骤变化。 SVR控制规律旨在最大限度地减少瞬态时间,设计了控制系统的微处理器的架构和操作算法。 SVRDIGITAL控制单元的原型在现场可编程门阵列集成电路Cyclone III EP3C120F780上使用Nios II软处理器核来实现。开发嵌入式软件以根据反馈回路信号的合成控制法计算电源开关的控制脉冲持续时间。对Prototype的案例研究表明,它提供由负载电流步骤改变引起的瞬态的持续时间,等于以120kHz的频率的3-4个转换周期。它证实了开发模型,算法和控制法律的适用性,以确保最小瞬态持续时间。

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