This paper proposes an adaptive rotor current controller for doubly-fed induction generator (DFIG), which consists of a proportional (P) controller and two harmonic resonant (R) controllers implemented in the rotor ro...This paper proposes an adaptive rotor current controller for doubly-fed induction generator (DFIG), which consists of a proportional (P) controller and two harmonic resonant (R) controllers implemented in the rotor rotating reference frame. The two resonant controllers are tuned at slip frequencies ωslip+ and ωslip-, respectively. As a result, the positive- and negative-sequence components of the rotor current are fully regulated by the PR controller without involving the positive- and negative-sequence decomposition, which in effect improves the fault ride-through (FRT) capability of the DFIG-based wind power generation system during the period of large transient grid voltage unbalance. Correctness of the theoretical analysis and feasibility of the proposed unbalanced control scheme are validated by simulation on a 1.5-MW DFIG wind power generation system.展开更多
以电压源换流器为接口的分布式电源(distributedgenerator,DG)的故障电流完全由其控制策略决定,其传统的等值模型通常与常规电源类似,而忽视了控制策略的影响,造成含DG配电网故障分析存在局限性,尤其对于非对称故障情况。为此,首先对DG...以电压源换流器为接口的分布式电源(distributedgenerator,DG)的故障电流完全由其控制策略决定,其传统的等值模型通常与常规电源类似,而忽视了控制策略的影响,造成含DG配电网故障分析存在局限性,尤其对于非对称故障情况。为此,首先对DG的相间短路故障穿越控制特性进行分析,针对正序分量控制的DG提出了压控电流源等值模型;在此基础上,通过建立DG输出电流与公共联接点(point of common coupling,PCC)正、负序电压之间的关系方程式,推导出不同的相间短路故障条件下PCC正序电压的求解方程组,从而建立含DG配电网相间短路故障分析精确模型。基于DIgSILENT建立含DG配电网模型,仿真结果验证了该故障分析方法的正确性。展开更多
基金Project (No. 50577056) supported by the National Natural ScienceFoundation of China
文摘This paper proposes an adaptive rotor current controller for doubly-fed induction generator (DFIG), which consists of a proportional (P) controller and two harmonic resonant (R) controllers implemented in the rotor rotating reference frame. The two resonant controllers are tuned at slip frequencies ωslip+ and ωslip-, respectively. As a result, the positive- and negative-sequence components of the rotor current are fully regulated by the PR controller without involving the positive- and negative-sequence decomposition, which in effect improves the fault ride-through (FRT) capability of the DFIG-based wind power generation system during the period of large transient grid voltage unbalance. Correctness of the theoretical analysis and feasibility of the proposed unbalanced control scheme are validated by simulation on a 1.5-MW DFIG wind power generation system.
文摘以电压源换流器为接口的分布式电源(distributedgenerator,DG)的故障电流完全由其控制策略决定,其传统的等值模型通常与常规电源类似,而忽视了控制策略的影响,造成含DG配电网故障分析存在局限性,尤其对于非对称故障情况。为此,首先对DG的相间短路故障穿越控制特性进行分析,针对正序分量控制的DG提出了压控电流源等值模型;在此基础上,通过建立DG输出电流与公共联接点(point of common coupling,PCC)正、负序电压之间的关系方程式,推导出不同的相间短路故障条件下PCC正序电压的求解方程组,从而建立含DG配电网相间短路故障分析精确模型。基于DIgSILENT建立含DG配电网模型,仿真结果验证了该故障分析方法的正确性。