Title :
Single-Loop Digital Control of High-Power 400-Hz Ground Power Unit for Airplanes
Author :
Li, Zixin ; Li, Yaohua ; Wang, Ping ; Zhu, Haibin ; Liu, Congwei ; Gao, Fanqiang
Author_Institution :
Inst. of Electr. Eng., Chinese Acad. of Sci., Beijing, China
Abstract :
In this paper, the influence of one-sample delay for sampling and computation in digital control on the bandwidth of the inner current loop of a 400-Hz ground power unit (GPU) is analyzed first. The results show that it is difficult and even impossible for high-power 400-Hz GPUs to maintain low total harmonic distortion content in the output voltage with the conventional proportional-integral-based double-loop control. To improve the performance, resonant controllers with parallel structure which are widely used in active power filters are applied to the single-loop control of the 400-Hz GPU. The parameter design criterion for the parallel resonant controllers is discussed in the discrete time domain. Meanwhile, adoption of proportional gain in the single-loop control is investigated. The results show that it can improve the performance little and may cause instability problems. Comparisons between different control methods for the 400-Hz GPU are also made, and the single-loop control method in this paper seems to be the most suitable one in terms of simplicity and performance. Experiments on a 16-b fixed-point DSP-controlled 90-kVA 400-Hz GPU prototype show satisfactory results of the single-loop method feeding linear/nonlinear and balanced/unbalanced loads.
Keywords :
PI control; aircraft power systems; controllers; delays; digital control; digital signal processing chips; harmonic distortion; power harmonic filters; resonant power convertors; time-domain analysis; 16b fixed point DSP; active power filters; airplanes; apparent power 90 kVA; bandwidth; delay; digital control; discrete time domain; frequency 400 Hz; ground power unit; harmonic distortion; inner current loop; proportional-integral-based double-loop control; resonant controller; sampling; single loop control method; 400-Hz inverter; Digital control; resonant controller; single-loop control;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2009.2033490