The proposed method deals with the emerging technique called as Motor Current Signature Analysis (MCSA) to diagnosis the stator faults of Induction Motors. The performance of the proposed method deals with the emergin...The proposed method deals with the emerging technique called as Motor Current Signature Analysis (MCSA) to diagnosis the stator faults of Induction Motors. The performance of the proposed method deals with the emerging technique called as Motor Current Signature Analysis (MCSA) and the Zero-Sequence Voltage Component (ZSVC) to diagnose the stator faults of Induction Motors. The unalleviated study of the robustness of the industrial appliances is obligatory to verdict the fault of the machines at precipitate stages and thwart the machine from brutal damage. For all kinds of industry, a machine failure escorts to a diminution in production and cost increases. The Motor Current Signature Analysis (MCSA) is referred as the most predominant way to diagnose the faults of electrical machines. Since the detailed analysis of the current spectrum, the method will portray the typical fault state. This paper aims to present dissimilar stator faults which are classified under electrical faults using MCSA and the comparison of simulation and hardware results. The magnitude of these fault harmonics analyzes in detail by means of Finite-Element Method (FEM). The anticipated method can effectively perceive the trivial changes too during the operation of the motor and it shows in the results.展开更多
电力系统中不平衡与非线性负载会产生电压电流不平衡与谐波,从而影响一些关键设备的正常运行。为提升多台构网型GFM(grid-forming)变流器系统的电能质量,需在合理分配负载电流基波负序与谐波分量的同时,尽可能降低公共耦合点PCC(point o...电力系统中不平衡与非线性负载会产生电压电流不平衡与谐波,从而影响一些关键设备的正常运行。为提升多台构网型GFM(grid-forming)变流器系统的电能质量,需在合理分配负载电流基波负序与谐波分量的同时,尽可能降低公共耦合点PCC(point of common coupling)的电压不平衡与谐波。针对这一问题,提出了一种基于统一不平衡/谐波电压-电流下垂的构网型变流器电能质量控制策略。通过建立PCC电压与输出电流的基波负序及谐波分量的统一下垂关系,实现不平衡与谐波电流在各单元之间按容量分配,且同时抑制PCC电压的不平衡与谐波。该方案适用于多变流器在离网与并网2种模式,且不需对基波负序与各次谐波分别提取,相比于现有控制方法更加简单,更易于在嵌入式控制器中实现。详细讨论了该方法基于闭环极点分析的控制参数设计方案。通过与现有方法的对比分析,所提方法具有更优的动态性能与更少的计算需求。最后,实验结果验证了所提控制方案的有效性。展开更多
文摘The proposed method deals with the emerging technique called as Motor Current Signature Analysis (MCSA) to diagnosis the stator faults of Induction Motors. The performance of the proposed method deals with the emerging technique called as Motor Current Signature Analysis (MCSA) and the Zero-Sequence Voltage Component (ZSVC) to diagnose the stator faults of Induction Motors. The unalleviated study of the robustness of the industrial appliances is obligatory to verdict the fault of the machines at precipitate stages and thwart the machine from brutal damage. For all kinds of industry, a machine failure escorts to a diminution in production and cost increases. The Motor Current Signature Analysis (MCSA) is referred as the most predominant way to diagnose the faults of electrical machines. Since the detailed analysis of the current spectrum, the method will portray the typical fault state. This paper aims to present dissimilar stator faults which are classified under electrical faults using MCSA and the comparison of simulation and hardware results. The magnitude of these fault harmonics analyzes in detail by means of Finite-Element Method (FEM). The anticipated method can effectively perceive the trivial changes too during the operation of the motor and it shows in the results.
文摘电力系统中不平衡与非线性负载会产生电压电流不平衡与谐波,从而影响一些关键设备的正常运行。为提升多台构网型GFM(grid-forming)变流器系统的电能质量,需在合理分配负载电流基波负序与谐波分量的同时,尽可能降低公共耦合点PCC(point of common coupling)的电压不平衡与谐波。针对这一问题,提出了一种基于统一不平衡/谐波电压-电流下垂的构网型变流器电能质量控制策略。通过建立PCC电压与输出电流的基波负序及谐波分量的统一下垂关系,实现不平衡与谐波电流在各单元之间按容量分配,且同时抑制PCC电压的不平衡与谐波。该方案适用于多变流器在离网与并网2种模式,且不需对基波负序与各次谐波分别提取,相比于现有控制方法更加简单,更易于在嵌入式控制器中实现。详细讨论了该方法基于闭环极点分析的控制参数设计方案。通过与现有方法的对比分析,所提方法具有更优的动态性能与更少的计算需求。最后,实验结果验证了所提控制方案的有效性。