Minimum-error demodulation of binary pcm signals
Demodulation of noisy, binary, pulse code modulated waveforms - error probability optimization
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Demodulation of noisy, binary, pulse code modulated waveforms - error probability optimization
Threshold reduction techniques in frequency modulation demodulators - predetection filtering to reduce signal to noise ratio at frequency discriminator input
Photodetection, photomixing, and dynamic crossed field electron multiplying light demodulator
Two-phase demodulation technique for vector measurements from spinning satellite applied to design of system for processing information from sensors
Method for demodulating spin-modulated data from magnetometer sensors mounted on spinning satellites
Continuous nonlinear recursive filtering based on Markov processes and state-variable concepts for application to optimum analog demodulation
Continuous nonlinear recursive filtering theory applied to optimum analog demodulation, using Markov processes and state variable concepts
Pulse code modulation/phase-shift keying subcarrier demodulator for data acquisition
Demodulation of amplitude modulated radio frequency waves in plasma at resonance
FM feedback system for lunar orbiter signal demodulation, discussing system composition and performance
Intermodulation distortion of phase-locked loop demodulator as influenced by system parameters
Frequency locked loop FM demodulator with high noise threshold
This paper functionally describes a novel Buffered Telemetry Demodulator (BTD) suitable for future low cost space missions characterized by low data rates and relatively weak space-to-ground communication links.
Methods used to get the most possible decibels from the weak Galileo spacecraft radio signal are detailed. These include the optimum phase detector for tracking square-wave subcarriers and the optimum weights to combine the signals demodulated from each of the harmonics.
Ground station networks connected to the cloud allow space missions to have global communications coverage without operating their own infrastructure. In this work, we describe the communications architecture for the TechEdSat-13 mission, which performed the first in-space characterization of a neuromorphic processor. The mission utilizes a commercial provider for S-band downlinks. A suite of cloud services and open-source software such as GNU Radio are leveraged to demodulate signals received by an AWS ground station during passes with TechEdSat-13 and store recovered data. Once a pass is scheduled, the entire process takes place without human intervention. On-orbit results the past year of operations are presented, demonstrating the advantages of this approach over traditional operator-owned ground stations. Use of software-defined radio makes possible custom signal processing. The homogeneity of apertures and their interfaces to the cloud simplifies scaling across many sites. This abundance of candidate links lays the groundwork for intelligent scheduling agents to optimize pass selection across several factors, automatically recover from failed contacts, and gather metrics to learn from past performance.
Accurate discriminator for demodulating noisy pfm telemetry signals, which consists of closely spaced bandpass filters
Communication, detection, and tracking systems - design and fabrication of dynamic crossed-field electron multiplying light demodulator
Function and capabilities of signal data demodulator as part of S-band system - Apollo