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A 101.4 GOPS/W reconfigurable and scalable control-centric embedded processor for domain-specific applications

机译:一个101.4 GOPS / W可重配置和可扩展的控制嵌入式嵌入式处理器,用于域 - 特定于域应用程序

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Increasing the energy efficiency and performance while providing the customizability and scalability is vital for embedded processors adapting to domain-specific applications such as Internet of Things. In this paper, we proposed a reconfigurable and scalable control-centric architecture, and implemented the design consisting of two cores and an on-chip multi-mode router in 65 nm technology. The reconfigurability is enabled by the restructurable sequence mapping table (SMT) thus the reorganizable functional units. Owing to the integration of the multi-mode router, on-chip or inter-chip network for multi-/many-core computing can be composed for performance extension on demand even in the post-fabrication stage. Control-centric design simplifies the control logic, shrinks the non-functional units and orchestrates the operations to increase the hard are utilization and reduce the excessive data movement for high energy efficiency. As a result, the processor can both conduct general-purpose processing with 29% smaller code size and application-specific processing with over 10 times performance improvement when implementing AES by SMT. The dual-core processor consumes 19.7 μW/MHz with die size of 3.5 mm~2. The achieved energy efficiency is 101.4GOPS/W.
机译:增加能量效率和性能,同时提供定制性和可扩展性对于适应域的域特定应用程序,例如物联网的嵌入式处理器至关重要。在本文中,我们提出了一种可重构和可扩展的控制中心架构,并实现了由两个核心和在65nm技术中的芯片和片上多模式路由器组成的设计。因此,重组序列映射表(SMT)能够实现重组功能单元。由于多模路由器的集成,即使在制造后阶段,也可以组成用于多模式路由器的片上或芯片间网络,用于满足性能扩展,即使在制造后阶段也是如此。以控制为中心的设计简化了控制逻辑,缩小非功能性单位,并协调运算以增加难以利用,并降低高能效率的过度数据移动。结果,处理器可以通过SMT实现AES在实现AES时进行29%较小的代码大小和特定于应用特定处理的通用处理。双核处理器消耗19.7μW/ MHz,管芯尺寸为3.5mm〜2。实现的能量效率为101.4gops / w。

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