A study of digital techniques for signal processing Semiannual status report, 1 Feb. - 30 Jun. 1968
Recursive techniques for digital signal processing, data smoothing and compression, and computer simulation of low error rate communication
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Recursive techniques for digital signal processing, data smoothing and compression, and computer simulation of low error rate communication
Advanced static inverter utilizing digital techniques and harmonic cancellation
Digital techniques for speech-to-noise ratio measurement
Analysis and definition of digital techniques for signal processing
Digital techniques for characterization of image sources, second order interpolation, sensitivity of compressed pictures to error, and simulation of mapping techniques
Digital techniques for automatic evaluation of images and data compression algorithms
Digital technique for compensation of time base error in magnetic tape recorder data
Digital techniques for adaptive signal processing
Analog inertial sensor digitizing methods, discussing pulse rebalancing and analog to digital conversion
Digital transducers and digital compatibility - analog-to-digital conversion techniques
Crop surveys from multiband and multibase satellite photography during Apollo 9 mission, using statistical multispectral pattern recognition digital techniques
Potential applications of digital techniques to Apollo unified S-band communications system
We have determined the densities of Si in the liquid, rho1(T), and solid,rho s(T), states as a function of temperature,T, by employing an image digitizing technique and numerical calculation methods in combination with an electrostatic levitator.
The largest contour strip mining operations in western Maryland and West Virginia are located within the Georges Creek and the Upper Potomac Basins. These two coal basins lie within the Georges Creek (Wellersburg) syncline. The disturbed strip mine areas were delineated with the surrounding geological and vegetation features using ERTS-1 data in both analog (imagery) and digital form. The two digital systems used were: (1) the ERTS-Analysis system, a point-by-point digital analysis of spectral signatures based on known spectral values, and (2) the LARS Automatic Data Processing System. The digital techniques being developed will later be incorporated into a data base for land use planning. These two systems aided in efforts to determine the extent and state of strip mining in this region. Aircraft data, ground verification information, and geological field studies also aided in the application of ERTS-1 imagery to perform an integrated analysis that assessed the adverse effects of strip mining. The results indicated that ERTS can both monitor and map the extent of strip mining to determine immediately the acreage affected and indicate where future reclamation and revegetation may be necessary.
Digital power spectral and wave polarization analysis are powerful techniques for studying ULF waves in the earth's magnetosphere. Four different techniques for using the spectral matrix to perform such an analysis have been presented in the literature. Three of these techniques are similar in that they require transformation of the spectral matrix to the principal axis system prior to performing the polarization analysis. The differences in the three techniques lie in the manner in which determine this transformation. A comparative study of these three techniques using both simulated and real data has shown them to be approximately equal in quality of performance. The fourth technique does not require transformation of the spectral matrix. Rather, it uses the measured spectral matrix and state vectors for a desired wave type to design a polarization detector function in the frequency domain. The design of various detector functions and their application to both simulated and real data will be presented.
Digital log-linear companding technique for nonuniform quantization of speech and image signals
Digital imaging analysis was used to study localized deformations in granular materials tested under plane strain condition. Two independent techniques were applied and compared. In the first, the digitized optical images of a grid printed on the latex membrane were used to measure the shear band orientation angle and thickness, and were found to be 54.5' and 3.01 mm respectively. The second technique involved introducing an ultra-low viscosity resin into the specimen in preparation for thin- sectioning and microscopic study of the internal fabric. A total of 24 microscopic images obtained from four thin sections were analyzed and void ratio variation was measured. The shear band thickness measurements from images located along the shear band axis (at two locations) were equal to 3.19 mm and 3.29 mm which are very close to the average value obtained from surface analysis. The study was then extended to investigate the effects of sand grain-size and properties, specimen density, and confining pressure on shear band thickness. It was found that the normalized shear band thickness decreases as grain-size and confining pressure increase and as density decreases. Finally, shear band thickness is highly influenced by the specimen dilatancy.
Digital computer program for analysis and weight optimization of thermoelectric generators for space applications