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A Systematic Approach to DC-Bus Control Design in Single-Phase Grid-Connected Renewable Converters

机译:单相并网可再生换流器直流母线控制设计的系统方法

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This paper presents a method for design and control of dc-bus capacitance and transients in a renewable single-phase grid-connected converter. Conventionally, a proportional (P) or proportional-integrating (PI) controller is commonly used and the design stage is performed using trial-error or using a simplified analysis that does not take the dynamics of the current control loop into consideration. This paper proposes 1) a systematic and efficient method for design of dc-bus PI controller gains; and 2) an accurate method for the design of the dc-bus controller gains without neglecting the dynamics of the current control loop. Two main objectives are to have control over the amount of output current harmonics and over the level of bus fluctuations caused by random input power swings. The proposed method is transparent and it provides a convenient and rigorous insight for the designer to properly select the size of dc-bus component and to determine the controller gains.
机译:本文提出了一种设计和控制可再生单相并网转换器中直流母线电容和瞬变的方法。常规上,通常使用比例(P)或比例积分(PI)控制器,并且使用试错法或使用不考虑电流控制回路动态特性的简化分析来执行设计阶段。本文提出:1)一种系统有效的直流母线PI控制器增益设计方法;和2)设计直流总线控制器增益的准确方法而又不忽略电流控制环路的动态特性。两个主要目标是控制输出电流谐波的量以及由随机输入功率摆幅引起的总线波动水平。所提出的方法是透明的,它为设计人员提供了方便而严格的见解,以使其能够正确选择直流母线组件的尺寸并确定控制器的增益。

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