Tian Xia, Gang Shi, Jianqiao Zhou, Jianwen Zhang, Xinming Fan, Linlin Chu
Dynamic voltage restorer (DVR) is an effective solution for mitigating voltage sags and swells, but conventional DVRs employ bulky and expensive line-frequency transformers, which significantly increase the overall cost of the device and hinder widespread adoption in low-voltage distribution systems. To satisfy the demand for high economic viability of DVRs, this article analyzes the three-level active neutral-point clamped (ANPC) converter from a novel series-shunt perspective and proposes a transformer-less DVR based on a modified ANPC (MANPC-TDVR). Compared to other DVRs, the proposed topology eliminates the transformer by sharing the shunt part and expanding the series parts, which leads to a lower total cost. The series parts provide voltage compensation, while the shunt part maintains the energy balance. The MANPC-TDVR features a dual-port structure, connecting the grid and load separately. To resolve the switching signal conflicts caused by the shared shunt part, a decoupling modulation strategy is introduced. Furthermore, operation principles and control strategies of the MANPC-TDVR are elaborated. Simulation results from a 250-kVA model and experimental validation on a scaled-down 3-kVA prototype confirm the feasibility and effectiveness of MANPC-TDVR.