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A Novel SVPWM Strategy for Multilevel Converters Based on Sector Triangle Numbering
Ist Teil von
IEEE transactions on power electronics, 2023-08, Vol.38 (8), p.1-13
Ort / Verlag
New York: IEEE
Erscheinungsjahr
2023
Quelle
IEEE Electronic Library (IEL)
Beschreibungen/Notizen
In order to simplify the location of the reference vector, avoid calculating a large number of redundant switching states and selecting the optimal switching state, and apply the space vector modulation to any level converters, a novel SVPWM strategy based on sector triangle numbering for multilevel converters is proposed in this paper. Firstly, the reference vector located in the large sector <inline-formula><tex-math notation="LaTeX">N</tex-math></inline-formula> is rotated clockwise to Sector I, and the numbers <inline-formula><tex-math notation="LaTeX">T_{n}</tex-math></inline-formula>, <inline-formula><tex-math notation="LaTeX">K</tex-math></inline-formula> and <inline-formula><tex-math notation="LaTeX">q</tex-math></inline-formula> of the small sector triangle where the rotated vector is located are calculated. Then, the three vertex vectors of the small sector triangle where the reference vector is located are directly calculated using <inline-formula><tex-math notation="LaTeX">N</tex-math></inline-formula>, <inline-formula><tex-math notation="LaTeX">T_{n}</tex-math></inline-formula>, <inline-formula><tex-math notation="LaTeX">K</tex-math></inline-formula> and <inline-formula><tex-math notation="LaTeX">q</tex-math></inline-formula> to realize the reference vector location, which is a very simple reference vector location method. Next, the switching state corresponding to the space vector is calculated using the minimum common-mode voltage constraint, which does not need to calculate the redundant switching states and select the optimal switching state. The proposed SVPWM strategy is applicable to any level converters without increasing the calculation workload and has strong engineering applicability. Simulations and experiments verified the correctness and feasibility of the proposed SVPWM strategy.