提出一种用于电机损耗精细化分析的分段变系数铁耗计算模型,该模型以经典Bertotti三项常系数铁耗模型为基础,引入涡流损耗附加磁通密度高次项及磁滞损耗附加磁通密度低次项,用于考虑磁路饱和导致涡流损耗增加及谐波磁场引起局部磁滞损...提出一种用于电机损耗精细化分析的分段变系数铁耗计算模型,该模型以经典Bertotti三项常系数铁耗模型为基础,引入涡流损耗附加磁通密度高次项及磁滞损耗附加磁通密度低次项,用于考虑磁路饱和导致涡流损耗增加及谐波磁场引起局部磁滞损耗增加的现象,同时,该模型中主要系数均随磁通密度幅值和频率变化,能很好地反映基波及谐波磁场对铁耗的影响,并对磁滞、涡流及异常损耗进行准确分离,实现铁耗精细化分析。为了验证该文所提模型的有效性及准确性,以Y132S-4、5.5k W和YX3-250M-4、55 k W两台感应电机为例,利用文中模型与经典Bertotti三项常系数模型对两台电机在不同电压下的空载铁耗进行实测和计算对比,结果表明该文所提模型在较宽范围内与实测值吻合程度较高。展开更多
Composite materials are increasingly used in the aerospace industry.To fully realise the weight saving potential along with superior mechanical properties that composites offer in safety critical applications,reliable...Composite materials are increasingly used in the aerospace industry.To fully realise the weight saving potential along with superior mechanical properties that composites offer in safety critical applications,reliable Non-Destructive Testing(NDT)methods are required to prevent catastrophic failures.This paper will review the state of the art in the field and point to highlight the success and challenges that different NDT methods are faced to evaluate the integrity of critical aerospace composites.The focus will be on advanced certificated NDT methods for damage detection and characterization in composite laminates for use in the aircraft primary and secondary structures.展开更多
文摘提出一种用于电机损耗精细化分析的分段变系数铁耗计算模型,该模型以经典Bertotti三项常系数铁耗模型为基础,引入涡流损耗附加磁通密度高次项及磁滞损耗附加磁通密度低次项,用于考虑磁路饱和导致涡流损耗增加及谐波磁场引起局部磁滞损耗增加的现象,同时,该模型中主要系数均随磁通密度幅值和频率变化,能很好地反映基波及谐波磁场对铁耗的影响,并对磁滞、涡流及异常损耗进行准确分离,实现铁耗精细化分析。为了验证该文所提模型的有效性及准确性,以Y132S-4、5.5k W和YX3-250M-4、55 k W两台感应电机为例,利用文中模型与经典Bertotti三项常系数模型对两台电机在不同电压下的空载铁耗进行实测和计算对比,结果表明该文所提模型在较宽范围内与实测值吻合程度较高。
基金the support of NVIDIA Corporation with the donation of the Titan Xp GPU used for this researchsupported by EPSRC grant EP/R002495/1the European Metrology Research Programme through grant 17IND08。
文摘Composite materials are increasingly used in the aerospace industry.To fully realise the weight saving potential along with superior mechanical properties that composites offer in safety critical applications,reliable Non-Destructive Testing(NDT)methods are required to prevent catastrophic failures.This paper will review the state of the art in the field and point to highlight the success and challenges that different NDT methods are faced to evaluate the integrity of critical aerospace composites.The focus will be on advanced certificated NDT methods for damage detection and characterization in composite laminates for use in the aircraft primary and secondary structures.