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Research on Improved Deadbeat Control Strategy Based on Interpolation Prediction and Online Inductance Identification

机译:基于插值预测和在线电感识别的改进的止血控制策略研究

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Aiming at the problem of control delay and inductance deviation, which exist in the traditional deadbeat control of the full-bridge circuit, an improved deadbeat control strategy was proposed. An improved Newton interpolation prediction algorithm was proposed to compensate the delay problem of deadbeat control, and an on-line inductance identification algorithm based on double frequency sampling was proposed to correct the inductance deviation. A mathematical model of deadbeat control for full-bridge inverter was established; besides, the performance of different interpolation prediction algorithms was analyzed. An online inductor identification model is established, on the basis of which the online inductance identification compensation formula is derived. It is indicated that an output constant current of 10?A is available with the deadbeat control relative error of only 0.2%, the grid-connected power factor up to 0.999, and the output current’s total harmonic distortion of only 2.37%. The prototype experiment shows that the output current’s total harmonic distortion is as low as 2.403% and the power factor is as high as 0.998. The results show that the improved deadbeat control strategy can effectively improve the control accuracy and the quality of grid-connected power.
机译:针对控制延迟和电感偏差的问题,在全桥电路的传统防止控制中存在,提出了一种改进的止血控制策略。提出了一种改进的牛顿插值预测算法来补偿死拍控制的延迟问题,提出了一种基于双频采样的在线电感识别算法来校正电感偏差。建立了全桥式逆变器的死差控制数学模型;此外,分析了不同插值预测算法的性能。建立在线电感识别模型,基于导出在线电感识别补偿公式。结果表明,10°的输出恒定电流可用于停止控制相对误差仅为0.2%,电网连接功率因数高达0.999,输出电流的总谐波失真仅为2.37%。原型实验表明,输出电流的总谐波失真低至2.403%,功率因数高达0.998。结果表明,改进的止血控制策略可以有效提高控制精度和电网连接功率的质量。

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