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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Digital Control of Single-Inductor Multiple-Output Step-Down DC–DC Converters in CCM
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Digital Control of Single-Inductor Multiple-Output Step-Down DC–DC Converters in CCM

机译:CCM中的单电感器多输出降压DC-DC转换器的数字控制

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This paper investigates the application of digital control for non-isolated single-inductor multiple-output step-down dc–dc converters operating in continuous-conduction mode. The accurate and independent control of each output requires a sophisticated digital control architecture so as to minimize the cross-regulation problem. The adopted control includes a separate regulation for common-mode and differential-mode output voltages. Due to the differential-mode control loop dependence on the load current, a variable-gain functional block has been investigated; this provision keeps the differential-mode loop gain constant under different load conditions. Moreover, a nonlinear evaluation of the common-mode voltage has been investigated in order to improve the system dynamic response to asymmetrical load changes. Even if aimed at an integrated solution, experimental verifications have been performed using discrete components, implementing the digital control in a field-programmable gate array. Simulation results on a three-output converter and experimental results on dual-output converter ( $V_{rm in} = 2.5 div 5 hbox{V}$, $V_{o1} = V_{o2} = 0.9 div 1.5 hbox{V}$, and $I_{o1} = I_{o2} = 0 div 0.6 hbox{A}$) confirm the proposed analysis.
机译:本文研究了数字控制在以连续导通模式工作的非隔离单电感多输出降压dc-dc转换器中的应用。每个输出的精确和独立控制需要复杂的数字控制架构,以最大程度地减少交叉调节问题。采用的控制包括针对共模和差模输出电压的单独调节。由于差模控制回路对负载电流的依赖性,已经研究了可变增益功能块;该规定可使差模环路增益在不同负载条件下保持恒定。此外,已经研究了共模电压的非线性评估,以改善系统对不对称负载变化的动态响应。即使针对集成解决方案,也已经使用分立元件进行了实验验证,并在现场可编程门阵列中实现了数字控制。三输出转换器的仿真结果和双输出转换器的实验结果($ V_ {rm in} = 2.5 div 5 hbox {V} $,$ V_ {o1} = V_ {o2} = 0.9 div 1.5 hbox {V } $和$ I_ {o1} = I_ {o2} = 0 div 0.6 hbox {A} $)证实了所提出的分析。

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