新型工业化
新型工業化
신형공업화
New Industrialization Straregy
2015年
6期
19-26
,共8页
陈丽娟%唐勇奇%林轩%胡涛
陳麗娟%唐勇奇%林軒%鬍濤
진려연%당용기%림헌%호도
双PWM%永磁同步电机%最大功率追踪%矢量控制
雙PWM%永磁同步電機%最大功率追蹤%矢量控製
쌍PWM%영자동보전궤%최대공솔추종%시량공제
Dual-PWM%Permanent magnet synchronous generator%MPPT%Vector control
根据风力机的输出特性,阐明最佳特性曲线法实现风力发电系统最大功率追踪的原理,选取背靠背电压型双PWM变换器为研究对象,在参考坐标变换理论基础上,分析并搭建了永磁同步电机和PWM变换器的数学模型,为仿真分析提供依据。依据变换器控制的数学模型,对网侧变换器和机侧变换器的控制策略进行了研究。网侧变换器采取前馈解耦方案,实现VSR的有功、无功功率解耦控制,获得基于电网电压定向的双闭环控制策略;机侧变换器采用零D轴电流控制策略,基于转子磁场定向的矢量控制方法,通过矢量控制方法实现对定子电流的控制,达到良好的转矩控制性能;基于MATLAB软件对设计的系统进行理论仿真验证,仿真结果证明矢量控制策略具有良好的稳态和动态性能。
根據風力機的輸齣特性,闡明最佳特性麯線法實現風力髮電繫統最大功率追蹤的原理,選取揹靠揹電壓型雙PWM變換器為研究對象,在參攷坐標變換理論基礎上,分析併搭建瞭永磁同步電機和PWM變換器的數學模型,為倣真分析提供依據。依據變換器控製的數學模型,對網側變換器和機側變換器的控製策略進行瞭研究。網側變換器採取前饋解耦方案,實現VSR的有功、無功功率解耦控製,穫得基于電網電壓定嚮的雙閉環控製策略;機側變換器採用零D軸電流控製策略,基于轉子磁場定嚮的矢量控製方法,通過矢量控製方法實現對定子電流的控製,達到良好的轉矩控製性能;基于MATLAB軟件對設計的繫統進行理論倣真驗證,倣真結果證明矢量控製策略具有良好的穩態和動態性能。
근거풍력궤적수출특성,천명최가특성곡선법실현풍력발전계통최대공솔추종적원리,선취배고배전압형쌍PWM변환기위연구대상,재삼고좌표변환이론기출상,분석병탑건료영자동보전궤화PWM변환기적수학모형,위방진분석제공의거。의거변환기공제적수학모형,대망측변환기화궤측변환기적공제책략진행료연구。망측변환기채취전궤해우방안,실현VSR적유공、무공공솔해우공제,획득기우전망전압정향적쌍폐배공제책략;궤측변환기채용령D축전류공제책략,기우전자자장정향적시량공제방법,통과시량공제방법실현대정자전류적공제,체도량호적전구공제성능;기우MATLAB연건대설계적계통진행이론방진험증,방진결과증명시량공제책략구유량호적은태화동태성능。
The principle of MPPT control of the WEGS using optical characteristic curve is explained according to wind turbine output characteristics.The back-back voltage source dual-PWM converter is selected for the study. The mathematical models of permanent magnet synchronous generator and PWM converter have been analyzed and built after referring to the coordinate transformation theory. This has provided a basis for the simulation analysis. It is a study on the control strategies of grid side converter and machine side converter based on the mathematical model of converter control. Feed-forward decoupling scheme is adopted to achieve the active and reactive power decoupling control on grid side converter. This paper obtains a voltage and current double closed-loop controlling method based on grid voltage orientation. To achieve good torque control performance, the zero d-axis current control strategy is used for the machine side converter. The stator current control strategy is obtained based on the rotor fiux orientation vector control method and vector control method. This can provide a reference for the selection of parameters. The simulation for the designed system is carried out using Matlab software. Simulation results verify that the method ofvector control has good stability and dynamic performance.