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Dynamic memory management methodology applied to embedded telecom network systems

机译:动态内存管理方法论应用于嵌入式电信网络系统

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Presents a new methodology for dynamic memory management of embedded telecom network systems. This methodology enables the designer to further raise the abstraction level of the initial system specification and to achieve optimized embedded system designs. This methodology is well suited for systems characterized by a set of concurrent and dynamic processes, very high-bit-rate data streams, and intensive data transfer and storage, as encountered in telecom network applications. Up to now, it has been successfully applied to four telecom network systems. This methodology can be easily integrated into any C++-based system synthesis approach that bridges the gap between a concurrent process-level system specification and an optimized (for area, performance, or power) embedded implementation of communicating hardware/software processors. This is in contrast to current system design practice, where VHDL/C is derived without room for exploration, refinement, and verification, leading to expensive late design iterations. In this paper, the main focus lies on the system-level specification model and the dynamic memory management applied to two real-life telecom network systems.
机译:提出了一种用于嵌入式电信网络系统的动态内存管理的新方法。这种方法使设计人员能够进一步提高初始系统规范的抽象水平,并实现优化的嵌入式系统设计。这种方法非常适合以电信网络应用程序中遇到的一系列并发和动态过程,非常高的比特率数据流以及密集的数据传输和存储为特征的系统。到目前为止,它已经成功地应用于四个电信网络系统。可以轻松地将此方法集成到任何基于C ++的系统综合方法中,该方法可以在并发过程级系统规范与通信硬件/软件处理器的优化(针对面积,性能或功耗)嵌入式实现之间建立桥梁。这与当前的系统设计实践形成了鲜明的对比,在现有的系统设计实践中,VHDL / C的派生没有探索,完善和验证的空间,从而导致昂贵的后期设计迭代。在本文中,主要重点在于系统级规范模型和应用于两个实际电信网络系统的动态内存管理。

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