电子设计工程
電子設計工程
전자설계공정
ELECTRONIC DESIGN ENGINEERING
2011年
20期
22-26
,共5页
光伏发电%最大功率跟踪%电导增量法%电压电流双环控制%光伏并网
光伏髮電%最大功率跟蹤%電導增量法%電壓電流雙環控製%光伏併網
광복발전%최대공솔근종%전도증량법%전압전류쌍배공제%광복병망
PV%the most power tracing(MPPT)%incremental conductance method%voltage and current loop control%photovohaic
为了提高光伏发电效率和电能质量,对光伏并网逆变器进行了相关研究,针对光伏最大功率点跟踪问题,对传统的电导增量法进行融合和改进.提出一种改进的电导增量控制算法。该控制算法能够快速精准地跟踪最大功率点;有效改善系统在最大功率点附近的震荡现象;提高了光伏电池的发电效率。在逆变控制方面,采用电压外环、电流内环的双PI环控制,电压外环实现中间直流母线电压的稳定控制。电流内环用于控制输出电流的稳定,两者通过中间直流母线耦合,匹配简单,系统控制具有较好的快速性和稳定性;减少了谐波含量,输出电流具有良好的正弦度,且与电网电压同频同相.因而提高了电能质量。最后用matlab对光伏并网逆变器进行建模仿真,实验结果表明该系统工作稳定.性能良好。达到了预定的设计效果。
為瞭提高光伏髮電效率和電能質量,對光伏併網逆變器進行瞭相關研究,針對光伏最大功率點跟蹤問題,對傳統的電導增量法進行融閤和改進.提齣一種改進的電導增量控製算法。該控製算法能夠快速精準地跟蹤最大功率點;有效改善繫統在最大功率點附近的震盪現象;提高瞭光伏電池的髮電效率。在逆變控製方麵,採用電壓外環、電流內環的雙PI環控製,電壓外環實現中間直流母線電壓的穩定控製。電流內環用于控製輸齣電流的穩定,兩者通過中間直流母線耦閤,匹配簡單,繫統控製具有較好的快速性和穩定性;減少瞭諧波含量,輸齣電流具有良好的正絃度,且與電網電壓同頻同相.因而提高瞭電能質量。最後用matlab對光伏併網逆變器進行建模倣真,實驗結果錶明該繫統工作穩定.性能良好。達到瞭預定的設計效果。
위료제고광복발전효솔화전능질량,대광복병망역변기진행료상관연구,침대광복최대공솔점근종문제,대전통적전도증량법진행융합화개진.제출일충개진적전도증량공제산법。해공제산법능구쾌속정준지근종최대공솔점;유효개선계통재최대공솔점부근적진탕현상;제고료광복전지적발전효솔。재역변공제방면,채용전압외배、전류내배적쌍PI배공제,전압외배실현중간직류모선전압적은정공제。전류내배용우공제수출전류적은정,량자통과중간직류모선우합,필배간단,계통공제구유교호적쾌속성화은정성;감소료해파함량,수출전류구유량호적정현도,차여전망전압동빈동상.인이제고료전능질량。최후용matlab대광복병망역변기진행건모방진,실험결과표명해계통공작은정.성능량호。체도료예정적설계효과。
In order to improve the efficiency of photovoltaic power generation and power quality, grid-connected inverter for photovohaic research was carried out for photovohaic maximum power point tracking problem, and After integration improvement to the traditional incremental conductance method, an improved incremental conductance control algorithm was proposed, the control algorithm can track maximum power point fast and accurately, effectively improve the system at maximum power point in the vicinity of the shock phenomenon, and improve the efficiency of photovohaie cells generate electricity. In the inverter control, the outer voltage and inner current double PI loop control were used, voltage outer loop achieved stability of the intermediate DC bus voltage control, current inner loop controled the output current stability, both through the intermediate DC link coupling , simple matched system control has good speed and stability; reduced harmonic content, output current has a good sinusoidal degree, and has same frequency an phase with the grid voltage, thus improved power quality. Finally, use matlab to photovoltaic inverter for modeling and simulation, experiment results show that the system was stable, good performance, and achieved clesigned purpose.