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Advanced Avionics and Processor Systems for a Flexible Space Exploration Architecture

机译:先进的航空电子和处理器系统,用于灵活的太空探索架构

摘要

The Advanced Avionics and Processor Systems (AAPS) project, formerly known as the Radiation Hardened Electronics for Space Environments (RHESE) project, endeavors to develop advanced avionic and processor technologies anticipated to be used by NASA s currently evolving space exploration architectures. The AAPS project is a part of the Exploration Technology Development Program, which funds an entire suite of technologies that are aimed at enabling NASA s ability to explore beyond low earth orbit. NASA s Marshall Space Flight Center (MSFC) manages the AAPS project. AAPS uses a broad-scoped approach to developing avionic and processor systems. Investment areas include advanced electronic designs and technologies capable of providing environmental hardness, reconfigurable computing techniques, software tools for radiation effects assessment, and radiation environment modeling tools. Near-term emphasis within the multiple AAPS tasks focuses on developing prototype components using semiconductor processes and materials (such as Silicon-Germanium (SiGe)) to enhance a device s tolerance to radiation events and low temperature environments. As the SiGe technology will culminate in a delivered prototype this fiscal year, the project emphasis shifts its focus to developing low-power, high efficiency total processor hardening techniques. In addition to processor development, the project endeavors to demonstrate techniques applicable to reconfigurable computing and partially reconfigurable Field Programmable Gate Arrays (FPGAs). This capability enables avionic architectures the ability to develop FPGA-based, radiation tolerant processor boards that can serve in multiple physical locations throughout the spacecraft and perform multiple functions during the course of the mission. The individual tasks that comprise AAPS are diverse, yet united in the common endeavor to develop electronics capable of operating within the harsh environment of space. Specifically, the AAPS tasks for the Federal fiscal year of 2010 are: Silicon-Germanium (SiGe) Integrated Electronics for Extreme Environments, Modeling of Radiation Effects on Electronics, Radiation Hardened High Performance Processors (HPP), and and Reconfigurable Computing.
机译:先进的航空电子和处理器系统(AAPS)项目,以前称为太空环境辐射硬化电子(RHESE)项目,致力于开发先进的航空电子和处理器技术,这些技术有望被NASA当前正在发展的太空探索体系结构使用。 AAPS项目是“探索技术开发计划”的一部分,该计划资助整套技术,旨在使NASA能够探索低地球轨道之外的能力。 NASA的马歇尔太空飞行中心(MSFC)管理AAPS项目。 AAPS使用广泛的方法来开发航空电子和处理器系统。投资领域包括能够提供环境硬度的先进电子设计和技术,可重新配置的计算技术,用于辐射效应评估的软件工具以及辐射环境建模工具。多个APS任务中的近期重点是使用半导体工艺和材料(例如硅锗(SiGe))开发原型组件,以增强设备对辐射事件和低温环境的耐受性。由于SiGe技术将在本财年交付使用的原型产品达到高潮,因此该项目的重点已转移到开发低功耗,高效率的整体处理器硬化技术上。除处理器开发外,该项目还努力展示适用于可重配置计算和部分可重配置的现场可编程门阵列(FPGA)的技术。这项功能使航空电子架构能够开发基于FPGA的耐辐射处理器板,该处理器板可在整个航天器的多个物理位置使用,并在任务过程中执行多种功能。组成AAPS的各个任务是多种多样的,但在共同的努力中却团结在一起,以开发能够在恶劣的太空环境中运行的电子设备。具体来说,2010联邦财政年度的AAPS任务是:针对极端环境的硅锗(SiGe)集成电子,对电子的辐射效应建模,辐射硬化高性能处理器(HPP)和可重构计算。

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