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Modulation-Enhanced Nearest-Level Quantization for a Wide Output Bandwidth

  • Jinshui Zhang
  • , Xiaoyang Tian
  • , Boshuo Wang
  • , Angel V. Peterchev
  • , Stefan M. Goetz*
  • *Corresponding author for this work
  • Duke University

Research output: Contribution to journalArticlepeer-review

Abstract

Multilevel converters have enabled various applications that are not possible with conventional two-level converters. Many of these applications, however, need a high output bandwidth, often approaching the switching rate limit of the transistors, with high quality, e.g., to actively stabilize and dampen a dc grid or specifically excite certain molecules or neural circuits in medical applications. A high bandwidth approaching the switching rate challenges existing modulation methods: carrier-based switching modulation is fine at low frequencies but experiences interaction between the carrier and the signal at the upper end of the spectrum; fundamental-frequency switching, such as nearest-level modulation, perform well at high frequencies but cause intolerable distortion for low-frequency contents. We propose a hybrid modulation concept that can combine any methods from these two classes. It passes the error of a fundamental frequency method through a filtered switching modulator to combine the high output quality of the latter with the high bandwidth of the former. We optimize the filter to avoid under-modulation of the signal with the carrier of the modulator and to achieve the minimum overall distortion throughout a wide output bandwidth. We demonstrate the performance experimentally with a cascaded-bridge converter and compare it with the best prior arts. This technique ensures a usable output bandwidth up to 100% of the switching rate and maintains a total distortion level below 3%.

Original languageEnglish
Pages (from-to)3289-3299
Number of pages11
JournalIEEE Transactions on Power Electronics
Volume39
Issue number3
DOIs
StatePublished - 1 Mar 2024
Externally publishedYes

Keywords

  • Current distortion
  • filter optimization
  • modular multilevel converter (MMC)
  • modulation techniques
  • nearest level modulation (NLM)
  • pulsewidth modulation (PWM)

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