固态变压器直流电压平衡级联h桥多电平有源整流器双模型预测控制

Merlin Chai, Naga Brahmendra Yadav Gorla, S. K. Panda
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引用次数: 2

摘要

固态变压器(SSTs)最近引起了人们的兴趣,因为除了升压/降压之外,它还具有提供辅助服务的潜力。在sst中,第一交直流级常用的拓扑结构是级联h桥(CHB)多电平有源整流器。本文提出了一种新的CHB多电平有源整流器的双模型预测控制方法,该方法可以实现源电流为正弦,直流电压保持在设定值,并平衡每个h桥单元的直流电压。CHB多电平有源整流器的主要模型旨在实现对源电流和输出电压的控制。二次模型利用能量守恒来计算参考源电流,从而消除了基于pi控制的外环的需要。基于luenberger的观测器用于估计直流负载电流。通过一个单相7电平CHB有源整流器的实验室样机,验证了该方法在稳态和暂态条件下的有效性。
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Dual-Model Predictive Control for Cascaded H-Bridge Multilevel Active Rectifier with DC Voltage Balancing in a Solid-State Transformer
Solid-state transformers (SSTs) have attracted recent interests due to its potential in providing ancillary services in addition to step-up/step-down of voltages. In SSTs, a common topology used in the first AC-DC stage is the cascaded H-bridge (CHB) multilevel active rectifier. This paper proposes a novel dual-model predictive control method for the CHB multilevel active rectifier that achieves sinusoidal source current, maintains DC voltages at set-points, and balances the DC voltages in each of the H-bridge cells. The primary model of the CHB multilevel active rectifier aims to enable control over source current and output voltage. The secondary model uses conservation of energy to calculate the reference source current, which eliminates the need for a PI-control-based outer loop. A Luenberger-based observer is also implemented to estimate the DC load currents. The effectiveness of the proposed method under steady-state and transient conditions is validated through a laboratory prototype of a single-phase 7-level CHB active rectifier.
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