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MEETING ENGINEER EFFICIENCY REQUIREMENTS IN HIGHLY PARALLEL SIGNAL PROCESSING BY USING PLATFORMS

机译:通过平台满足高度并行信号处理中的工程师效率要求

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One of the driving forces behind the development of new, highly parallel architectures is the need for embedded high-performance computing. The development of advanced applications on such architectures is, however, potentially connected to high costs. Cost-effective development requires tools and processes that provide engineer efficiency, in this case tools and processes that help the developer master the application complexity. Related to engineer efficiency are the important concepts of system sustainability and flexibility. To address these issues, a platform approach can be taken. The platform should offer an understandable and stable development model, and at the same time give the possibility to take advantage of the rapid technology development, including the use of new parallel architectures. Thus it must support multiple hardware targets, and the development model should decouple application development from mapping aspects. Two radar signal processing examples, one compute-intensive STAP and one data-intensive SAR, are used to illustrate the need. The GEPARD platform is presented as an example of our approach, and we argue that the described platform is a good fit for advanced signal processing development, facilitating the desired engineer efficiency, sustainability, and flexibility.
机译:开发新的高度并行体系结构背后的推动力之一是对嵌入式高性能计算的需求。但是,在这种架构上开发高级应用程序可能会导致高成本。具有成本效益的开发需要能够提高工程师效率的工具和流程,在这种情况下,这些工具和流程可以帮助开发人员掌握应用程序的复杂性。与工程师效率相关的是系统可持续性和灵活性的重要概念。为了解决这些问题,可以采用一种平台方法。该平台应提供一个可理解且稳定的开发模型,同时使利用快速的技术开发(包括使用新的并行体系结构)的可能性成为可能。因此,它必须支持多个硬件目标,并且开发模型应该使应用程序开发与映射方面脱钩。两个雷达信号处理示例(一个计算密集型STAP和一个数据密集型SAR)用于说明此需求。提出了GEPARD平台作为我们方法的示例,并且我们认为所描述的平台非常适合高级信号处理开发,从而有助于实现所需的工程师效率,可持续性和灵活性。

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