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A GPP-DSP based computing task allocation scheme for on-board signal processing in OFDM satellite system

机译:基于GPP-DSP基于OFDM卫星系统的车载信号处理的计算任务分配方案

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Satellite communication plays an important role in the global connection for its large coverage and stability against the terrestrial disaster. Usually the on-board signal processor is customized for the satellite which it is implemented on, with high processing ability but also with high construction cost and difficulty of reconfiguration. Thus a reconfigurable on-board processor is required to fulfill the demand of more frequent and periodic configuration update. This paper presents a computing task allocation scheme based on general purpose processor, (GPP)-digital signal processor (DSP) signal processing system, in which GPP handles the generic algorithms such as channel coding, modulation, time and frequency synchronization while DSP is in charge of special mathematic operations. We first introduce a low earth orbit (LEO) orthogonal frequency division multiplexing (OFDM) satellite physical layer system as an example with an analysis of the system's calculation characteristics. After that, a computing task allocation scheme corresponding to the system is derived based on the computation characteristic of all the modules in the system. Finally, the processing time with and without the scheme algorithm is tested on a system consist of a PC and a DSP board. Experiment results show that the processing time of the DSP-GPP system is shortened using the proposed scheme, compared to the GPP-only system without the task allocation scheme.
机译:卫星沟通在全球联系中起着重要作用,以实现对陆地灾难的大覆盖和稳定性。通常,载体信号处理器是为卫星进行定制的,具有高处理能力,但也具有高建成本和重新配置的难度。因此,需要可重新配置的车载处理器来满足更频繁和周期性配置更新的需求。本文介绍了一种基于通用处理器的计算任务分配方案(GPP) - 代焦信号处理器(DSP)信号处理系统,其中GPP处理诸如DSP中的通道编码,调制,时间和频率同步的通用算法特殊数学运营的负责。我们首先介绍一个低地球轨道(LEO)正交频分复用(OFDM)卫星物理层系统,作为系统的计算特性的分析。之后,基于系统中所有模块的计算特征导出与系统相对应的计算任务分配方案。最后,在系统组成的系统上测试了具有和不具有方案算法的处理时间,包括PC和DSP板。实验结果表明,与唯一没有任务分配方案的GPP系统相比,使用所提出的方案缩短了DSP-GPP系统的处理时间。

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