Vienna 整流器网压重构功率控制
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TM46 TH39

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重庆市教委科学技术研究重点项目(KJZD201901102)、重庆市研究生科研创新项目(CYS22644)资助


Grid voltage reconfiguration predictive power control of Vienna rectifiers
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    摘要:

    在电网电压不平衡下采用双闭环 PI 控制策略需对电网电压正负序分量分别控制,同时其参数整定较为复杂、稳定性能 较差。 为了简化在不平衡下的控制结构,提高系统的整体控制效果,提出了一种在电网不平衡下的 Vienna 整流器网压重构功 率控制策略。 首先,通过在 αβ 两相静止坐标系下对电网不平衡电压采用网压重构控制进行处理,减少了坐标变换,取消了正 负序分量分离;然后,从优化整定参数复杂性的角度,建立以瞬时功率理论为基础的预测功率数学模型,取消了 PI 控制器参数 的整定;最后,通过在 MATLAB/ Simulink 中搭建基于网压重构的预测功率控制与 PI 双闭环控制策略的仿真模型进行对比分析。 对比分析表明,相比于传统 PI 控制策略,控制策略在电网不平衡下降低了网侧电流总畸变率约 70% ,在电网不平衡且负载突变 下降低了约 40% ,并进一步在实验平台上验证了该控制策略的可行性。

    Abstract:

    When the grid voltage is unbalanced, the double closed-loop PI control strategy needs to control the positive and negative sequence components of the grid voltage separately. Its parameter setting is complicated and the stability performance is poor. To simplify the control structure under unbalanced condition and improve the overall control effect of the system, a power control strategy for Vienna rectifier grid voltage reconfiguration under grid unbalanced condition is proposed. Firstly, by using grid voltage reconfiguration control to deal with the unbalanced voltage of the grid in the αβ two-phase static coordinate system, the coordinate transformation is reduced and the separation of positive and negative sequence components is cancelled. Then, from the perspective of optimizing the complexity of tuning parameters, a mathematical model of predicted power based on instantaneous power theory is formulated, and the tuning of PI controller parameters is cancelled. Finally, the comparison and analysis are implemented by building the simulation model of the predictive power control based on the network voltage reconstruction and the PI double closed-loop control strategy in MATLAB/ Simulink. Compared with the traditional PI control strategy, the analysis shows that this control strategy reduces the total distortion rate of grid-side current by about 70% under grid unbalance, and about 40% under grid unbalance and load mutation. The feasibility of the control strategy is evaluated on the platform.

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向文凯,郭 强,肖蕙蕙,陈 岚,胡前云. Vienna 整流器网压重构功率控制[J].仪器仪表学报,2022,43(8):154-162

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  • 在线发布日期: 2023-02-06
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