The research effort on the control of large space structures at the University of Houston has concentrated on the mathematical theory of finite-element models; identification of the mass, damping, and stiffness matrix; assignment of damping to structures; and decoupling of structure dynamics. The objective of the work has been and will continue to be the development of efficient numerical algorithms for analysis, control, and identification of large space structures. The major consideration in the development of the algorithms has been the large number of equations that must be handled by the algorithm as well as sensitivity of the algorithms to numerical errors
The control of large space structures was studied to determine what, if any, limitations are imposed...
A selective technical overview is presented on the vibration and control of large space structures, ...
Some unique properties on a class of the second order lambda matrices were found and applied to dete...
Proposed large space structures have many characteristics that make them difficult to analyze and co...
Numerical algorithms for large space structures were investigated with particular emphasis on decoup...
An outline of this work is presented. It begins with a schematic flow diagram and a logical flow dia...
Basic research in the control of large space structures is discussed. Active damping and control of ...
The control of vibrations of large space structures by distributed sensors and actuators is studied....
Two damping identification methods are tested for efficiency in large-scale applications. One is an ...
Various topics related to the control of large space structures are discussed. Equations of motion f...
This final report on computational methods and software systems for dynamics and control of large sp...
Issued as Progress & forecast report, Interim technical report, Annual technical reports [nos. 1-2],...
Basic research on the engineering behavior of large space structures is presented. Methods of struct...
A general survey of the progress made in the areas of mathematical modelling of the system dynamics,...
The design of a controller for large space structures (LSS) based on the LQG theory requires the kno...
The control of large space structures was studied to determine what, if any, limitations are imposed...
A selective technical overview is presented on the vibration and control of large space structures, ...
Some unique properties on a class of the second order lambda matrices were found and applied to dete...
Proposed large space structures have many characteristics that make them difficult to analyze and co...
Numerical algorithms for large space structures were investigated with particular emphasis on decoup...
An outline of this work is presented. It begins with a schematic flow diagram and a logical flow dia...
Basic research in the control of large space structures is discussed. Active damping and control of ...
The control of vibrations of large space structures by distributed sensors and actuators is studied....
Two damping identification methods are tested for efficiency in large-scale applications. One is an ...
Various topics related to the control of large space structures are discussed. Equations of motion f...
This final report on computational methods and software systems for dynamics and control of large sp...
Issued as Progress & forecast report, Interim technical report, Annual technical reports [nos. 1-2],...
Basic research on the engineering behavior of large space structures is presented. Methods of struct...
A general survey of the progress made in the areas of mathematical modelling of the system dynamics,...
The design of a controller for large space structures (LSS) based on the LQG theory requires the kno...
The control of large space structures was studied to determine what, if any, limitations are imposed...
A selective technical overview is presented on the vibration and control of large space structures, ...
Some unique properties on a class of the second order lambda matrices were found and applied to dete...