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DFC plus plus Processing Framework Concept A Novel Framework Approach for Flexible Signal Processing on Embedded Systems

机译:DFC plus plus处理框架概念一种用于嵌入式系统上灵活信号处理的新型框架方法

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Development of modern Software Defined Radio (SDR) based communication systems can be accelerated significantly by the use of processing frameworks. The evolution of SDR and the involved departure from digital representations of classical radio architecture towards more abstract software systems raises new requirements of increased flexibility and versatility. The proposed Data Flow Control for C++ (DFC++) processing framework concept addresses those requirements by employing modern programming techniques and flow control mechanisms to allow for variable data rates, dynamic paths, and flexible component designs. Another important trend is the integration of various embedded platforms in the software radio domain. The rapidly increasing performance and efficiency of embedded processors enables the deployment of SDR systems in more space and power constrained environments. Therefore covering a heterogeneous hardware selection becomes increasingly important for processing frameworks. By relying exclusively on C++ and minimizing external dependencies, DFC++ is specifically aiming for excellent portability and adaptability to support a wide range of current and future software radio projects while maintaining high performance and ease of use. This paper introduces the key aspects of the DFC++ concept and implementation with focus on the reference pointer based data transport mechanisms responsible for the propagation of user data between different processing components.
机译:通过使用处理框架,可以大大加快基于现代软件定义无线电(SDR)的通信系统的开发。 SDR的发展以及从经典无线电体系结构的数字表示形式向更抽象的软件系统的转变提出了提高灵活性和多功能性的新要求。提议的C ++数据流控制(DFC ++)处理框架概念通过采用现代编程技术和流控制机制来满足那些要求,以允许可变数据速率,动态路径和灵活的组件设计。另一个重要趋势是软件无线电领域中各种嵌入式平台的集成。嵌入式处理器的性能和效率迅速提高,使得SDR系统可以部署在更多空间和功率受限的环境中。因此,涵盖异构硬件选择对于处理框架变得越来越重要。通过完全依赖C ++并最大程度地减少对外部的依赖,DFC ++的目标是具有出色的可移植性和适应性,以在保持高性能和易用性的同时,支持广泛的当前和将来的软件无线电项目。本文介绍了DFC ++概念和实现的关键方面,重点介绍了基于参考指针的数据传输机制,该机制负责在不同处理组件之间传播用户数据。

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