Non-cascaded Model-free Predictive Direct Voltage Control of Three-phase Vienna Rectifier
ID:50 View Protection:ATTENDEE Updated Time:2023-06-14 12:11:19 Hits:487 Oral Presentation

Start Time:2023-06-18 17:00 (Asia/Shanghai)

Duration:20min

Session:[S] Oral Session » [S4] Oral Session 7 & Oral Session 10

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Abstract
With the benefit of simplicity and ease of implement, the cascade structure is commonly adopted in the three-phase Vienna rectifier control system. However, it is difficult to achieve excellent performance due to the bandwidth limitation of the inner and outer control loops. To address this issue, this paper proposes a model-free predictive direct voltage control (MFPDVC) method based on a linear extended state observer (LESO). Firstly, an ultra-local model containing perturbation terms of parameters is constructed to enhance system robustness in case of parameter mismatches. Secondly, an LESO is designed to observe the unknown parts of the ultra-local model and compensate for the system prediction equation. Thirdly, a cost function including voltage, power and neutral point potential is formulated to achieve multi-objective optimal control with a single loop, which breaks the bandwidth limitation of the cascade structure. Finally, the feasibility and validity of the proposed method are verified through experimental comparison.
Keywords
direct voltage control;model-free;linear extended state observer;three-phase Vienna rectifier
Speaker
Xinhong Yu
Quanzhou Institute of Equipment Manufacturing

Fengxiang Wang
Quanzhou Institute of Equipment Manufacturing, Chinese Academy of Sciences

Ziyu Cai

Dongliang Ke
Quanzhou Institute of Equipment Manufacturing

Jose Rodriguez
Universidad San Sebastian

Heldwein Marcelo

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