This paper shows two approaches to improve the performance of numeral al- gebra software by describing block algorithms in LAPACK. The block algorithms can make up higher level and more effcient BLAS programs. This pa...This paper shows two approaches to improve the performance of numeral al- gebra software by describing block algorithms in LAPACK. The block algorithms can make up higher level and more effcient BLAS programs. This paper further presents the relations between the effciency of the block algorithm and the size of block, and shows the relations relates to not only scale of algorithms and problems but also architectures and Characters of destination machines. Finally The paper gives the test results on Hitachi SR2201& SR8000.展开更多
针对自行研制的磁悬浮隔振器,设计了基于分块归一化LMS(Block Normalized Least Mean Square)算法的控制律。该算法不需要对次级通道进行建模,且结构简单,易于实现。把该算法应用于带有非线性特性的磁悬浮隔振实验平台,并对其进行振动...针对自行研制的磁悬浮隔振器,设计了基于分块归一化LMS(Block Normalized Least Mean Square)算法的控制律。该算法不需要对次级通道进行建模,且结构简单,易于实现。把该算法应用于带有非线性特性的磁悬浮隔振实验平台,并对其进行振动主动控制实验。实验结果表明:该控制算法收敛速度较快,取得了良好的隔振效果。展开更多
文摘This paper shows two approaches to improve the performance of numeral al- gebra software by describing block algorithms in LAPACK. The block algorithms can make up higher level and more effcient BLAS programs. This paper further presents the relations between the effciency of the block algorithm and the size of block, and shows the relations relates to not only scale of algorithms and problems but also architectures and Characters of destination machines. Finally The paper gives the test results on Hitachi SR2201& SR8000.
文摘针对自行研制的磁悬浮隔振器,设计了基于分块归一化LMS(Block Normalized Least Mean Square)算法的控制律。该算法不需要对次级通道进行建模,且结构简单,易于实现。把该算法应用于带有非线性特性的磁悬浮隔振实验平台,并对其进行振动主动控制实验。实验结果表明:该控制算法收敛速度较快,取得了良好的隔振效果。