Paralleled Two-Stage Single-Phase AC-DC Converter Modules Utilizing a Second-Stage Input-Current based Droop Control Strategy

Author(s):  
Danish Shahzad ◽  
Khurram K. Afridi
2014 ◽  
Vol 29 (8) ◽  
pp. 4247-4260 ◽  
Author(s):  
Jianhua Wang ◽  
Baojian Ji ◽  
Xuqian Lu ◽  
Xiang Deng ◽  
Fanghua Zhang ◽  
...  

2014 ◽  
Vol 960-961 ◽  
pp. 1225-1229
Author(s):  
Xing Wu Yang ◽  
Hong Chao Ji ◽  
Wei Gan

The paper proposes a AC and DC mixed output VPS(vehicle power supply). It is composed of a two-stage circuit with the input stage and the output stage. The input stage contains a single-phase PWM inverter, a HFT (high-frequency transformer) and an uncontrolled rectifier. The single-phase PWM inverter adopts the open-loop control strategy to convert the low DC voltage into a high-frequency one with square wave. The HFT enhances the voltage and insulates the low-voltage side from the high-voltage side. The uncontrolled rectifier transforms the square voltage into DC voltage. In the output stage, one output uses single-phase PWM inverter and the other uses a DC chopper, both of which adopt the double-loop PWM control mode. The mode consists of an outer voltage loop and an inner current loop to produce desirable voltage and power. With the two-stage control strategy, ideal output currents and the output voltages are obtained, and the input power factor is controllable. The VPS model is established on MATLAB/SIMULINK, and this system is also implemented in laboratory based on DSP TMS320F28335. The results of simulation and experiment verify the proposed VPS system.


2010 ◽  
Vol 3 (2) ◽  
pp. 176 ◽  
Author(s):  
Y. Neba ◽  
K. Ishizaka ◽  
R. Itoh

2015 ◽  
Vol 733 ◽  
pp. 684-690 ◽  
Author(s):  
Zhong Lin Zhang ◽  
Tao Wang

In the three-phase four-wire low-voltage micro grid, three-phase imbalance usually happens because of a large number of single-phase loads. In this situation, the traditional control method cannot effectively control the voltage and frequency stability when the low-voltage micro grid operates in the island mode. According to the characteristics of the three-phase four-wire low-voltage micro grid, this paper designs a single-phase independent control based on the droop control. This paper firstly uses the improved droop control considering that the impedance characteristic of the low voltage micro gird is mainly resistance, and also designs single-phase independent control to ensure the control system have the ability to run under the unbalanced loads. Then this paper designs a two-level control strategy to control the voltage and frequency in the micro grid during the island operation. Finally, a simulation analysis based on the proposed method is used to prove the effectiveness. A micro grid is set up on PSCAD, and verifies the effectiveness of the single-phase control strategy based on the improved droop control. The proposed method can also realize the requirement of the voltage and frequency stability during the island operation. At the same time, the control method proposed in this paper can achieve the control objective under the condition of unbalanced three-phase.


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