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Dynamic Forms. Part 1: FunctionsThe formalism of dynamic forms is developed as a means for organizing and systematizing the design control systems. The formalism allows the designer to easily compute derivatives to various orders of large composite functions that occur in flight-control design. Such functions involve many function-of-a-function calls that may be nested to many levels. The component functions may be multiaxis, nonlinear, and they may include rotation transformations. A dynamic form is defined as a variable together with its time derivatives up to some fixed but arbitrary order. The variable may be a scalar, a vector, a matrix, a direction cosine matrix, Euler angles, or Euler parameters. Algorithms for standard elementary functions and operations of scalar dynamic forms are developed first. Then vector and matrix operations and transformations between parameterization of rotations are developed in the next level in the hierarchy. Commonly occurring algorithms in control-system design, including inversion of pure feedback systems, are developed in the third level. A large-angle, three-axis attitude servo and other examples are included to illustrate the effectiveness of the developed formalism. All algorithms were implemented in FORTRAN code. Practical experience shows that the proposed formalism may significantly improve the productivity of the design and coding process.
Document ID
19940009317
Acquisition Source
Legacy CDMS
Document Type
Technical Publication (TP)
Authors
Meyer, George
(NASA Ames Research Center Moffett Field, CA, United States)
Smith, G. Allan
(NASA Ames Research Center Moffett Field, CA, United States)
Date Acquired
September 6, 2013
Publication Date
August 1, 1993
Subject Category
Engineering (General)
Report/Patent Number
A-93078
NAS 1.60:3397
NASA-TP-3397
Report Number: A-93078
Report Number: NAS 1.60:3397
Report Number: NASA-TP-3397
Accession Number
94N13790
Funding Number(s)
PROJECT: RTOP 505-64-52
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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