Title :
Self-Reconfiguration Property of a Mixed Signal Controller for Improving Power Quality Compensation During Light Loading
Author :
Man-Chung Wong ; Yan-Zheng Yang ; Chi-Seng Lam ; Wai-Hei Choi ; Ning Yi Dai ; Yajie Wu ; Chi-kong Wong ; Sai-Weng Sin ; U-Fat Chio ; Seng-Pan, U. ; Martins, Rui P.
Author_Institution :
Electr. & Comput. Eng. Dept., Univ. of Macau, Macao, China
Abstract :
This paper proposes a FPAA-FPGA/DSP-based mixed signal controller that achieves superior performance when compared with conventional digital controllers in power quality compensation. This includes adaptive signal conditioning and programmability on-the-fly, higher flexibility, parallel computation capability, and easy implementation. In practical applications, the power quality compensator may suffer from poor compensation performance, particularly during light loading. The adaptive signal gain and programmable on-the-fly functions of the mixed signal controller are intended to improve the system compensation performance, which cannot be achieved by using conventional digital controllers alone. In this study, an approximate total harmonic distortion (ATHD) is proposed to determine the total harmonic distortion value more quickly, reducing the evaluation time of the power quality compensation system performance. With hysteresis pulse width modulations, when the hysteresis error margin is designed, the ATHD can be determined instantaneously. Finally, representative simulation and experimental results of a three-phase four-wire center-split hybrid active power filter are presented. These verify the validity and effectiveness of the proposed mixed signal controller in improving current quality compensation performance during light load conditions, compared with a conventional digital controller.
Keywords :
active filters; digital signal processing chips; field programmable analogue arrays; field programmable gate arrays; harmonic distortion; mixed analogue-digital integrated circuits; power filters; power supply circuits; ATHD; DSP-based mixed signal controller; FPAA-FPGA; adaptive signal conditioning; approximate total harmonic distortion; hybrid active power filter; hysteresis error margin; hysteresis pulse width modulations; light load conditions; light loading; power quality compensation; power quality compensator; self-reconfiguration property; three-phase four-wire center-split; Digital signal processing; Field programmable analog arrays; Field programmable gate arrays; Hysteresis; Indexes; Power quality; Pulse width modulation; Converters; Power Conditioning; Power Quality; Power System Harmonics; Reactive Power; power conditioning; power quality; power system harmonics; reactive power;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2014.2376983