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Featured researches published by Janette C. Briones.


ieee aerospace conference | 2013

SDR input power estimation algorithms

Janette C. Briones; Jennifer M. Nappier

The General Dynamics (GD) S-Band software defined radio (SDR) in the Space Communications and Navigation (SCAN) Testbed on the International Space Station (ISS) provides experimenters an opportunity to develop and demonstrate experimental waveforms in space. The SDR has an analog and a digital automatic gain control (AGC) and the response of the AGCs to changes in SDR input power and temperature was characterized prior to the launch and installation of the SCAN Testbed on the ISS. The AGCs were used to estimate the SDR input power and SNR of the received signal and the characterization results showed a nonlinear response to SDR input power and temperature. In order to estimate the SDR input from the AGCs, three algorithms were developed and implemented on the ground software of the SCAN Testbed. The algorithms include a linear straight line estimator, which used the digital AGC and the temperature to estimate the SDR input power over a narrower section of the SDR input power range. There is a linear adaptive filter algorithm that uses both AGCs and the temperature to estimate the SDR input power over a wide input power range. Finally, an algorithm that uses neural networks was designed to estimate the input power over a wide range. This paper describes the algorithms in detail and their associated performance in estimating the SDR input power.


34th AIAA International Communications Satellite Systems Conference | 2016

Future Standardization of Space Telecommunications Radio System with Core Flight System

Janette C. Briones; Joseph P. Hickey; Rigoberto Roche; Louis M. Handler; Charles S. Hall

NASA Glenn Research Center (GRC) is integrating the NASA Space Telecommunications Radio System (STRS) Standard with the Core Flight System (cFS), an avionics software operating environment. The STRS standard provides a common, consistent framework to develop, qualify, operate and maintain complex, reconfigurable and reprogrammable radio systems. The cFS is a flexible, open architecture that features a plugand- play software executive called the Core Flight Executive (cFE), a reusable library of software components for flight and space missions and an integrated tool suite. Together, STRS and cFS create a development environment that allows for STRS compliant applications to reference the STRS application programmer interfaces (APIs) that use the cFS infrastructure. These APIs are used to standardize the communication protocols on NASAs space SDRs. The cFS-STRS Operating Environment (OE) is a portable cFS library, which adds the ability to run STRS applications on existing cFS platforms. The purpose of this paper is to discuss the cFS-STRS OE prototype, preliminary experimental results performed using the Advanced Space Radio Platform (ASRP), the GRC S band Ground Station and the SCaN (Space Communication and Navigation) Testbed currently flying onboard the International Space Station (ISS). Additionally, this paper presents a demonstration of the Consultative Committee for Space Data Systems (CCSDS) Spacecraft Onboard Interface Services (SOIS) using electronic data sheets (EDS) inside cFE. This configuration allows for the data sheets to specify binary formats for data exchange between STRS applications. The integration of STRS with cFS leverages mission-proven platform functions and mitigates barriers to integration with future missions. This reduces flight software development time and the costs of software-defined radio (SDR) platforms. Furthermore, the combined benefits of STRS standardization with the flexibility of cFS provide an effective, reliable and modular framework to minimize software development efforts for spaceflight missions.


Archive | 2012

Space Telecommunications Radio System (STRS) Architecture Standard. Release 1.02.1

Richard C. Reinhart; Thomas J. Kacpura; Louis M. Handler; C. Steve Hall; Dale J. Mortensen; Sandra K. Johnson; Janette C. Briones; Jennifer M. Nappier; Joseph A. Downey; James P. Lux


Archive | 2013

GD SDR Automatic Gain Control Characterization Testing

Jennifer M. Nappier; Janette C. Briones


Archive | 2009

Case Study: Using The OMG SWRADIO Profile and SDR Forum Input for NASA's Space Telecommunications Radio System

Janette C. Briones; Louis M. Handler; Steve C. Hall; Richard C. Reinhart; Thomas J. Kacpura


Archive | 2018

K-Means Cluster Study for Radiofrequency Propagation Characterization

Tyler Cody; Rigoberto Roche; Janette C. Briones


Archive | 2018

Metabrain for Embedded Cognition (MBEC)

Rigoberto Roche; Janette C. Briones; Brittany N. Kowalewski


Archive | 2016

Considerations for the Next Revision of NASA's Space Telecommunications Radio System Architecture

Sandra K. Johnson; Louis M. Handler; Janette C. Briones


Archive | 2013

Space Telecommunications Radio System STRS Cognitive Radio

Janette C. Briones; Louis M. Handler


Archive | 2013

Space Telecommunications Radio System (STRS) Architecture

Dale J. Mortensen; Louis M. Handler; Janette C. Briones; Richard C. Reinhart

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James P. Lux

Jet Propulsion Laboratory

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