A three-bay, space, cantilever truss is probabilistically evaluated for adaptive/smart/intelligent behavior. For each behavior, the scatter (ranges) in buckling loads, vibration frequencies, and member axial forces are probabilistically determined. Sensitivities associated with uncertainties in the structure, material and load variables that describe the truss are determined for different probabilities. The relative magnitude for these sensitivities are used to identify significant truss variables that control/classify its behavior to respond as an adaptive/smart/intelligent structure. Results show that the probabilistic buckling loads and vibration frequencies increase for each truss classification, with a substantial increase for intellig...
The probabilistic structural analysis method (PSAM) was developed to analyze the effects of fluctuat...
The work reported in this thesis is about one of the many branches of convex optimization: the truss...
A methodology is developed to computationally simulate the uncertain behavior of composite structure...
A three-bay, space, cantilever truss is probabilistically evaluated to quantify the range of uncerta...
A three-bay, space, cantilever truss is probabilistically evaluated to describe progressive buckling...
A probabilistic design method is described and demonstrated using a smart composite wing. Probabilis...
The Probabilistic Structural Analysis Methods (PSAM) project developed at the Southwest Research Ins...
In this paper, the research status on intelligent adaptive structures especially in space engineerin...
This article numerically investigates dynamic stiffness versus strength trades of imperfect passive ...
Determining a feasible safety factor for space trusses is an important phase in structural analysis ...
The effects of actual variations, also called uncertainties, in geometry and material properties on ...
Adaptive composite structures using actuation materials, such as piezoelectric fibers, were assessed...
The objective is the development of several modular structural analysis packages capable of predicti...
The development of a probabilistic structural analysis methodology (PSAM) is described. In the near-...
The Probabilistic Structures Analysis Method (PSAM) program integrates state of the art probabilisti...
The probabilistic structural analysis method (PSAM) was developed to analyze the effects of fluctuat...
The work reported in this thesis is about one of the many branches of convex optimization: the truss...
A methodology is developed to computationally simulate the uncertain behavior of composite structure...
A three-bay, space, cantilever truss is probabilistically evaluated to quantify the range of uncerta...
A three-bay, space, cantilever truss is probabilistically evaluated to describe progressive buckling...
A probabilistic design method is described and demonstrated using a smart composite wing. Probabilis...
The Probabilistic Structural Analysis Methods (PSAM) project developed at the Southwest Research Ins...
In this paper, the research status on intelligent adaptive structures especially in space engineerin...
This article numerically investigates dynamic stiffness versus strength trades of imperfect passive ...
Determining a feasible safety factor for space trusses is an important phase in structural analysis ...
The effects of actual variations, also called uncertainties, in geometry and material properties on ...
Adaptive composite structures using actuation materials, such as piezoelectric fibers, were assessed...
The objective is the development of several modular structural analysis packages capable of predicti...
The development of a probabilistic structural analysis methodology (PSAM) is described. In the near-...
The Probabilistic Structures Analysis Method (PSAM) program integrates state of the art probabilisti...
The probabilistic structural analysis method (PSAM) was developed to analyze the effects of fluctuat...
The work reported in this thesis is about one of the many branches of convex optimization: the truss...
A methodology is developed to computationally simulate the uncertain behavior of composite structure...