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用于无线基带处理的分层数据流驱动异构架构.pdf

上传人: 芦苇 编号:651846 2025-05-01 20页 1.88MB

1、Limin Jiang,Yi Shi,Yintao Liu,Qingyu Deng,Siyi Xu,Yihao Shen,Fangfang Ye,Shan Cao,and Zhiyuan JiangSchool of Communication and Information Engineering,Shanghai University,ChinaA Hierarchical Dataflow-Driven Heterogeneous Architecture for Wireless Baseband ProcessingAdvanced Communication and Computi

2、ng Electronics LabOutlineBackground&MotivationRelated Works System DesignEvaluationConclusion2Background3 5G expansion drives demand for energy-efficient,open-sourcehardware to replace proprietary solutions.Implementing hardware for data-intensive wireless baseband processing(WBP)poses major challen

3、ges.Background4X86 Server/GPGPU:Massive computing capabilityHigh energy consumptionASIC:Best PPALong time to marketDSP:VLIW boosts ILPHigh control overhead limits scalabilityWBP:How?Motivation5 Two characteristics of WBP:Modular:TDD frame structure separates uplink and downlink into data-independent

4、,successivemodules.Cyclical:Signal generation or decoding based on communication protocols is on a subframe(periodic)basis.WBP is decoupled and predictable.Contribution6 A cache-free manycore architecture is proposed to increase energy and area efficiency without compromising performance due to the

5、predictable data processing nature of WBP.We develop a pack-and-ship data dispatch system to enable the tiles to operate in a bundled access and execution style,which can drastically reduce the cost of data movement.A hierarchical dataflow task scheduling scheme is designed and two strategies,namely

6、 multi-threading and lazy-deletion,are proposed to fully utilize the hardware resources.7Related WorksWorkCore HeterogeneityScalabilityDLPTLPHW/SW Co-designSoraTeraPool-SPECTRUMMACRON-MAGALI-DXT501Ours Various works have been presented in academia seeking a way towards manycore parallel computing fo

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本文提出了一种用于无线基带处理的分层数据流驱动异构架构。该架构采用缓存免费的 manycore 设计,以提高能源和面积效率,同时不牺牲性能。研究团队开发了一种打包和发货数据调度系统,使瓦片能够以捆绑访问和执行方式运行,从而显著降低数据移动成本。文章还设计了一种分层数据流任务调度方案,并提出了多线程和延迟删除两种策略,以充分利用硬件资源。实验结果显示,该架构在单瓦片性能上介于商业硬件和 ASIC 之间,且在 Von Neumann 瓶颈方面仍具有优势。此外,与单级架构相比,多级架构下的功耗和吞吐量都有所提高。
"5G时代下,如何提高无线基带处理效率?" "异构计算在无线通信领域有哪些应用前景?" "如何通过数据流调度优化无线基带处理性能?"
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