电力科学与工程
電力科學與工程
전력과학여공정
INFORMATION ON ELECTRIC POWER
2014年
6期
66-72
,共7页
三相光伏并网系统%比例谐振控制%重复控制
三相光伏併網繫統%比例諧振控製%重複控製
삼상광복병망계통%비례해진공제%중복공제
three-phase photovoltaic grid system%proportional resonant control%repetitive control
在分析LCL型的光伏并网系统的运行状态的前提下,针对三相光伏并网系统的稳定性能、输出波形质量的好坏以及电网的抗干扰能力等问题,提出了一种基于比例谐振的重复控制的控制策略。该控制策略利用比例谐振( PR)在其谐振频率处增益无穷大的特点,消除稳态误差,实现电流的无静差跟踪,提高系统的稳态性能;利用传统的重复控制在并网系统稳定以后可以抑制电网的周期性扰动,从而提高系统的动态性能、电网的抗干扰能力以及获得高质量的并网电流波形。最后通过Matlab /Simulink进行仿真验证,结果显示这种改进的重复控制策略能够很好地解决光伏并网的稳定性能、输出波形质量的好坏以及电网的抗干扰能力这类问题。
在分析LCL型的光伏併網繫統的運行狀態的前提下,針對三相光伏併網繫統的穩定性能、輸齣波形質量的好壞以及電網的抗榦擾能力等問題,提齣瞭一種基于比例諧振的重複控製的控製策略。該控製策略利用比例諧振( PR)在其諧振頻率處增益無窮大的特點,消除穩態誤差,實現電流的無靜差跟蹤,提高繫統的穩態性能;利用傳統的重複控製在併網繫統穩定以後可以抑製電網的週期性擾動,從而提高繫統的動態性能、電網的抗榦擾能力以及穫得高質量的併網電流波形。最後通過Matlab /Simulink進行倣真驗證,結果顯示這種改進的重複控製策略能夠很好地解決光伏併網的穩定性能、輸齣波形質量的好壞以及電網的抗榦擾能力這類問題。
재분석LCL형적광복병망계통적운행상태적전제하,침대삼상광복병망계통적은정성능、수출파형질량적호배이급전망적항간우능력등문제,제출료일충기우비례해진적중복공제적공제책략。해공제책략이용비례해진( PR)재기해진빈솔처증익무궁대적특점,소제은태오차,실현전류적무정차근종,제고계통적은태성능;이용전통적중복공제재병망계통은정이후가이억제전망적주기성우동,종이제고계통적동태성능、전망적항간우능력이급획득고질량적병망전류파형。최후통과Matlab /Simulink진행방진험증,결과현시저충개진적중복공제책략능구흔호지해결광복병망적은정성능、수출파형질량적호배이급전망적항간우능력저류문제。
For the three-phase photovoltaic ( pv) grid system stable performance, the output waveform quality, and the anti-interference ability of the power grid, a control strategy based on proportional resonance repetitive control is put forward after analyzing the running state of LCL type photovoltaic grid system. The proposed control strategy e-liminates the steady-state error, realizes the current zero steady-state error tracking, and improves the steady-state performance of the system by using the characteristic that the proportional resonant controller has infinite gain at its resonant frequency;Using conventional repetitive control after the interconnection system stability can suppress the periodic disturbance of power grid, so as to improve the dynamic performance of system, the anti-interference abili-ty of the power grid, and obtain high quality grid current waveform. Finally simulation by Matlab/Simulink is con-ducted, the result shows that the improved repetitive control strategy can be a very good solution to solve the photo-voltaic grid stable performance, the anti-interference ability of the output waveform quality and power grid.