NPC型并网逆变器参数自适应预测电流控制策略
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1.辽宁工程技术大学电气与控制工程学院葫芦岛125105; 2.华润新能源(临沂)有限公司临沂276400; 3.国网安徽省电力有限公司太湖县供电公司安庆246400

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TM464TH86

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Adaptive predictive current control strategy for NPC-type grid-connected inverters parameters
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1.School of Electrical and Control Engineering, Liaoning Technical University, Huludao 125105, China; 2.China Resources New Energy (Linyi) Co., Ltd., Linyi 276400, China; 3.Taihu County Power Supply Company, State Grid Anhui Electric Power Co., Ltd., Anqing 246400, China

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    摘要:

    针对NPC型并网逆变器在无差拍预测电流控制时因系统参数失配导致的电流跟踪精度下降问题,提出了一种基于Popov超稳定性理论的模型参考自适应无差拍预测电流控制策略。首先,利用无差拍预测控制器,通过两步预测对输出电流进行预测与补偿,在理想条件下可实现高动态响应和低谐波失真。其次,为进一步克服实际中电感参数变化带来的影响,引入模型参考自适应结构,通过构建参考模型与可调模型进行对比,得到其输出误差后依据Popov超稳定性理论设计参数自适应律,实现对关键参数的实时辨识与动态补偿,从而在维持系统动态响应速度的同时显著提升参数鲁棒性及电流预测精度。同时将基于动态因子的SVPWM策略嵌入至模型参考自适应无差拍预测电流控制中,对电压矢量作用时间进行重新分配,在输出电压矢量的同时有效抑制中点电位的波动,进一步提高系统的控制品质和运行稳定性。最后,搭建仿真模型和实验样机并与传统策略进行对比分析。结果表明,在无参数失配情况下,所提策略相较于传统的无差拍预测电流控制策略,系统的输出电流总谐波畸变率降低了9%,在参数失配下降低了28%,动态响应速度提升了34%,验证了所提控制策略在增强系统鲁棒性、改善输出波形质量以及加速动态响应方面的有效性。

    Abstract:

    To address the issue of degraded current tracking accuracy in NPC grid-connected inverters caused by parameter mismatches under conventional deadbeat predictive current control, this paper proposes a model reference adaptive deadbeat predictive control strategy based on Popov′s hyperstability theory. First, a two-step prediction scheme is employed to forecast and compensate the output current, achieving high dynamic response and low harmonic distortion under ideal conditions. Second, to mitigate the influence of inductance parameter variations, a model reference adaptive structure is introduced. By comparing the outputs error of a reference model and an adjustable model, an adaptation law is designed according to Popov′s hyperstability theory, enabling real-time parameter identification and dynamic compensation. This enhances parameter robustness and current prediction accuracy without compromising dynamic performance. Furthermore, a dynamic factor-based SVPWM strategy is incorporated into the control framework. By redistributing the action time of voltage vectors, this method effectively suppresses neutral-point potential fluctuations while synthesizing the desired output voltage vector, thereby improving control quality and operational stability. Finally, both simulation and experimental results demonstrate that, compared with conventional deadbeat predictive current control,the proposed strategy reduces output current THD by 9% under matched parameters and by 28% under parameter mismatch, while improving dynamic response speed by 34%. These results verify the of the proposed strategy in enhancing system robustness, improving waveform quality, and accelerating dynamic response.

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刘春喜,赵文江,马龙涛,洪方瑞,蔡磊. NPC型并网逆变器参数自适应预测电流控制策略[J].仪器仪表学报,2025,46(8):362-375

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  • 在线发布日期: 2025-11-07
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