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The AMS Operating System: a prototyping environment for real-time signal processing algorithm development

机译:AMS操作系统:用于实时信号处理算法开发的原型环境

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The major focus of the Acoustic Telemetry Group at Woods Hole Oceanographic Institution has been the development of underwater acoustic communication and remote sensing devices. These are typically deployed in buoys, underwater vehicles, or in ocean-bottom packages. The devices communicate acoustically with a surface station, conveying scientific results to observers, and accepting commands. A significant milestone in the evolution of such platforms has been the development of an operating system (called AMS) for embedded signal processing. This system allows rapid algorithm prototyping using a high-level, matrix-based language specialized to DSP targets and real-time data-flow processing. A key feature of AMS, distinguishing it from other high-level DSP specification software, is that the language is interpreted as well as executed by the target DSP. Performance is maintained by (i) coding time-critical algorithm steps in C or assembly language, and (ii) using multiple DSP devices in a loosely-coupled network. The motivation for, and development of, the AMS Operating System are reviewed. The potential for rapid algorithm prototyping using AMS is demonstrated by way of two applications in underwater acoustic signal processing.
机译:声学遥测集团在树林洞海洋学机构的主要关注点一直是水下声学通信和遥感装置的开发。这些通常在浮标,水下车辆或海底包装中部署。该设备用地面站向声学进行通信,将科学结果传送到观察者,接受命令。在这种平台的演变中的一个重要里程碑一直是开发用于嵌入信号处理的操作系统(称为AMS)。该系统允许使用专门为DSP目标和实时数据流处理的高级,基于基于矩阵的语言的快速算法原型。 AMS的一个关键特征,将其与其他高级DSP规范软件区分开,是语言被解释并由目标DSP执行。在C或汇编语言中的(i)编码时间关键算法步骤(i)在C或汇编语言中的步骤中的步骤维持,以及(ii)在松散耦合网络中使用多个DSP设备。综述了AMS操作系统的动机和发展。通过两个在水下声信号处理中的两个应用来证明使用AMS的快速算法原型的潜力。

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