Table-lookup/interpolation function generation for fixed-point digital computations.
Table lookup/interpolation function generation for fixed point digital computations, illustrating sine-cosine generator
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Table lookup/interpolation function generation for fixed point digital computations, illustrating sine-cosine generator
Microwave circuits automatic analysis and design using digital computer in batch mode, describing analysis-optimization program
The engineering programming information for the digital computer program for analyzing shell structures is presented. The program is designed to permit small changes such as altering the geometry or a table size to fit the specific requirements. Each major subroutine is discussed and the following subjects are included: (1) subroutine description, (2) pertinent engineering symbols and the FORTRAN coded counterparts, (3) subroutine flow chart, and (4) subroutine FORTRAN listing.
Recently advanced simulation techniques have been developed for the digital computer and used as the basis for development of a generalized dynamic engine simulation computer program, called DYNGEN. This computer program can analyze the steady state and dynamic performance of many kinds of aircraft gas turbine engines. Without changes to the basic program, DYNGEN can analyze one- or two-spool turbofan engines. The user must supply appropriate component performance maps and design point information. Examples are presented to illustrate the capabilities of DYNGEN in the steady state and dynamic modes of operation. The analytical techniques used in DYNGEN are briefly discussed, and its accuracy is compared with a comparable simulation using the hybrid computer. The impact of DYNGEN and similar digital programs on future engine simulation philosophy is also discussed.
Deep space tracking stations, discussing digital computers for monitoring functions such as real time measure, station performance, failure detection, etc
Recently advanced simulation techniques have been developed for the digital computer and used as the basis for development of a generalized dynamic engine simulation computer program, called DYNGEN. This computer program can analyze the steady state and dynamic performance of many kinds of aircraft gas turbine engines. Without changes to the basic program DYNGEN can analyze one- or two-spool turbofan engines. The user must supply appropriate component performance maps and design-point information. Examples are presented to illustrate the capabilities of DYNGEN in the steady state and dynamic modes of operation. The analytical techniques used in DYNGEN are briefly discussed, and its accuracy is compared with a comparable simulation using the hybrid computer. The impact of DYNGEN and similar all-digital programs on future engine simulation philosophy is also discussed.
Recently advanced simulation techniques have been developed for the digital computer and used as the basis for development of a generalized dynamic engine simulation computer program, called DYNGEN. This computer program can analyze the steady state and dynamic performance of many kinds of aircraft gas turbine engines. Without changes to the basic program, DYNGEN can analyze one- or two-spool turbofan engines. The user must supply appropriate component performance maps and design-point information. Examples are presented to illustrate the capabilities of DYNGEN in the steady state and dynamic modes of operation. The analytical techniques used in DYNGEN are briefly discussed, and its accuracy is compared with a comparable simulation using the hybrid computer. The impact of DYNGEN and similar all-digital programs on future engine simulation philosophy is also discussed.
Digital computer program for geometrically nonlinear analysis of thin shells of revolution under axisymmetric loads
Digital computer program for analysis and synthesis of distributed lumped activity networks
Digital computer program for homopolar inductor alternator electromagnetic design analysis
Digital computer analysis and synthesis of distributed-lumped-active networks
Digital computer technique for computing scattered pattern of complex hyperboloid subreflector in Cassegrain antenna feed systems
Contour integrals and finite difference in Radiation View Digital Computer Program
Digital computer computation for problems involving smooth and ribbed plates and shells, either stressed or not stressed by holes
Numerical digital computer method for determining transient responses of nonlinear automatic systems based on calculation of convolution integral
Analog and digital computer simulation of proposed X-15 flight conditions effect on safe component operation
Digital computer rigid body simulation of impervious hemisphere and disk-gap-band parachute systems response to high altitude wind shear
Digital computer program for distributed-lumped- active network analysis