Interior‑point‑method‑based switching angle computation for selective harmonic elimination in high‑frequency cascaded H‑bridge multilevel inverters


Vol. 24, No. 8, pp. 1229-1240, Aug. 2024
10.1007/s43236-024-00793-6




 Abstract

To transmit high power very-low-frequency signals with low harmonic content, the high-frequency cascaded H-bridge multilevel inverter (HF-MLI) usually has large number of levels and uses the selective harmonic elimination (SHE) technique for modulation. However, when the number of levels exceeds 25, the conventional SHE switching angle computation methods have a problem since the computed switching angles tend to be located at 0 and π/2, which makes the harmonic suppression effect worse. To realize a good harmonic suppression effect for HF-MLIs with a large number of levels, an interior point method based switching angle computation method is proposed in this paper. With the aid of the interior point method (IPM), the constraints of switching angles are combined with the harmonic function in the objective function through a penalty function. The iteration is divided into the inner loop and the outer loop. The switching angles are computed in the inner loop and the weight of the penalty function is updated in the outer loop. The penalty function can keep the switching angles away from constraints. When compared with conventional methods, the proposed method has a higher accuracy, a shorter execution time and better harmonic suppression effect when computing the switching angles of MLIs with more than 25 levels. The harmonics from 9 to 19th-order of the proposed method are suppressed to less than 0.1%, which is experimentally verified on a single-phase 49-level HF-MLI.


 Statistics
Show / Hide Statistics

Cumulative Counts from September 30th, 2019
Multiple requests among the same browser session are counted as one view. If you mouse over a chart, the values of data points will be shown.



Cite this article

[IEEE Style]

G. Long, X. Wu, H. Liu, H. Lou, B. Shen, C. Yan, W. Kong, "Interior‑point‑method‑based switching angle computation for selective harmonic elimination in high‑frequency cascaded H‑bridge multilevel inverters," Journal of Power Electronics, vol. 24, no. 8, pp. 1229-1240, 2024. DOI: 10.1007/s43236-024-00793-6.

[ACM Style]

Gen Long, Xiang-Long Wu, Heng-Yang Liu, Hang-Chuan Lou, Bo-Han Shen, Chen Yan, and Wu-Bin Kong. 2024. Interior‑point‑method‑based switching angle computation for selective harmonic elimination in high‑frequency cascaded H‑bridge multilevel inverters. Journal of Power Electronics, 24, 8, (2024), 1229-1240. DOI: 10.1007/s43236-024-00793-6.