Flight test of a Little Joe boosted full- scale spacecraft model and escape system for Project Mercury
Flight test of Little Joe boosted full-scale spacecraft model and escape system for Mercury project
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Flight test of Little Joe boosted full-scale spacecraft model and escape system for Mercury project
Control techniques for large highly-coupled elastic boost vehicles with elastic and fuel slosh mode frequencies close to desired control frequencies - motion equations
Iterative and perturbation approaches to near optimum steering equations for boost vehicle guidance
Design criteria for pulse and frequency modulated boost regulator
Longitudinal structural vibration and lateral bending response mass and spring coupling in Saturn AS-502 during boost with longitudinal excitation by pogo effect
Saturn 5 boost phase environment simulation on Apollo stages, discussing fixtures, load devices, instrumentation and ground test
High efficiency boost regulator design and tests for planetary spacecraft, considering input and output voltages
Design and operational analysis of buck-boost voltage regulator for solar array battery in space power system
Delta boosted electrically raised high power synchronous satellite for communication tasks
Longitudinal structural vibration and lateral bending response mass and spring coupling in Saturn AS-502 during boost with longitudinal excitation by pogo effect
Buck-boost main bus voltage regulator for solar array battery space power system
Space shuttle boost vehicle with various degrees of aerodynamic stability, discussing control laws effects on rigid body bending moment tradeoff
A six degree of freedom simulation of rigid vehicles was developed to study space shuttle vehicle boost-abort guidance and control techniques. The simulation was described in detail as an all digital program and as a hybrid program. Only the digital simulation was implemented. The equations verified in the digital simulation were adapted for use in the hybrid simulation. Study results were obtained from four abort cases using the digital program.
A description of a hybrid simulation of the 040C orbiter aborting from boost to specified landing site is provided. The simulation starts when the abort is initiated and continues until a terminal energy state (associated with the selected landing site) is reached. At abort it is assumed that all SRM's are jettisoned with the external tank remaining with the orbiter. The simulation described has six degrees of freedom with the vehicle simulated as a rigid body. A conventional form of autopilot is provided to control engine gimbaling during powered flight. An ideal form of an autopilot is provided to test conventional autopilot function and provide pseudo RCS function during coasting flight. The simulation is proposed to provide means for studies of abort guidance function and to gain information concerning ability to control the abort trajectory.
Solutions of the optimal boost problem for the MSC April 1970 base line shuttle vehicle show significant payload increases may be achieved by flying optimal pitch profiles. Results consistent with aerodynamic and acceleration constraints indicate payload gains of approximately 2.0 per cent of the total injected weight may be achieved. This corresponds to a real payload increase of about 20 per cent. Trajectory parameters for optimal launches under various conditions and a standard gravity turn launch are presented along with a brief discussion of the problem modeling and assumptions. The data are used to support a number of observations and conclusions and to provide some insight into the methods by which payload gains are achieved.
Analytic expressions for the small-signal power-stage describing functions of a switched dc-dc boost regulator are derived from an approximate continuous circuit model which is developed by a time-averaging technique. Closed-loop stability is attained through the design of frequency compensation of the loop gain. Open- and closed-loop regulator output impedances are derived from the linearized models for the given configuration. The analysis and design are compared with and confirmed by breadboard measurements.
Versatile standardized pulse modulation nondissipatively regulated control signal processing circuits were applied to three most commonly used dc to dc power converter configurations: (1) the series switching buck-regulator, (2) the pulse modulated parallel inverter, and (3) the buck-boost converter. The unique control concept and the commonality of control functions for all switching regulators have resulted in improved static and dynamic performance and control circuit standardization. New power-circuit technology was also applied to enhance reliability and to achieve optimum weight and efficiency.
Prosthetic pump is proposed which can improve liver blood supply by boosting blood pressure locally to the organ. Device has potential use in treatment of cirrhosis of the liver.