Analysis of satellite power systems for maximum utilization of power.
Analysis of satellite power systems for maximum utilization of power
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Analysis of satellite power systems for maximum utilization of power
Comparison is made of the power consumed and the acoustic amplification realized when a dc bias field is placed across a piezoelectric semiconductor and adjusted to amplify a microwave acoustic signal to the point where the forward gain is just equal to the reverse attenuation. This represents the maximum possible gain condition.
Pulse width modulated switching voltage regulators applied to Maximum Power Point Tracking /MPPT/ space power systems
Waveform distortion in maximum likelihood Darlington detector for M-ary pulse frequency modulation signals
Maximum likelihood techniques for design of optimum star trackers that determine position and magnitude
Thermodynamics of plasmas using principle of maximum entropy
Maximum likelihood receiver for digital data transmission via pulse amplitude modulation
Maximum likelihood properties and asymptotic distributions for limiting distribution of likelihood ratio statistic under class of local alternatives
Maximum drop diameters for atomization of liquid jets injected concurrently into accelerating or decelerating gas streams
Maximum principle for optimal control problems with delay-differential system equations
Maximum principle for distributed systems applied to design of waveguides and transmission lines
Error probabilities for maximum signal detection in presence of Poisson noise
Maximum likelihood identification of stochastic linear systems
Optimal radar waveforms for clutter rejection in range and range rate determination system, using maximum principle
Ionosphere electron concentration profiles during sunspot maximum and minimum, using DOVAP in 1958 and rocket-borne two frequency propagation in 1964
Optimal linear filter derivation using Pontryagin maximum principle and gradient matrices for optimal filter coefficients
Digital data transmission maximum-likelihood receiver design minimizing effects of additive random noise and nearest neighbor intersymbol interference
Waveguide and transmission line optimal design to minimize reflected power due to mismatch over frequency band, using distributed maximum principle