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18.2 A 1.9TOPS and 564GOPS/W heterogeneous multicore SoC with color-based object classification accelerator for image-recognition applications

机译:18.2 A 1.9tops和564GOPS / W异构多芯SOC,具有基于颜色的对象分类加速器,用于图像识别应用

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Image recognition technologies have gained prominence in a variety of fields, such as automotive and surveillance, with dedicated image-recognition ICs being developed recently [1-2]. Image recognition ICs for an advanced driver assistance system (ADAS) have also been proposed [3]. However, future ADAS applications must support greater numbers of real-time recognition processes simultaneously, with higher detection rates and lower false-positive rates. For instance, adaptive cruise control (ACC), an application of ADAS, comprises many image recognition processes, such as pedestrian detection (PD), vehicle detection (VD), general obstacle detection (GOD), lane detection (LD), traffic light recognition (TLR), and traffic sign recognition (TSR). ACC also requires high detection accuracy to prevent unnecessary braking or acceleration. To satisfy these requirements, we have developed an SoC with two 4-core processor clusters and 14 hard-wired accelerators. It is designed to realize the six recognition processes (PD, VD, GOD, LD, TLR, and TSR) for ACC and automatic high beam (AHB) for headlight control. It achieves 1.9TOPS peak performance in 3.37W. This low power consumption enables the SoC to operate with passive cooling in a high-temperature automotive environment.
机译:图像识别技术在各种领域获得了突出的,例如汽车和监视,最近正在开发的专用图像识别IC [1-2]。还提出了一种高级驾驶员辅助系统(ADAS)的图像识别IC [3]。但是,未来的ADAS应用程序必须同时支持更大数量的实时识别过程,检测率较高,较低的假阳性速率。例如,Adasive Cruise Control(ACC),ADA的应用包括许多图像识别过程,例如行人检测(PD),车辆检测(VD),一般障碍物检测(GOD),车道检测(LD),交通灯识别(TLR)和交通标志识别(TSR)。 ACC还需要高检测精度,以防止不必要的制动或加速度。为了满足这些要求,我们开发了一个带有两个4核处理器集群和14个硬连线加速器的SOC。它旨在实现ACC和自动高光束(AHB)的六个识别过程(PD,VD,GOD,LD,TLR和TSR),用于前灯控制。它在3.37W中实现了1.9秒峰值性能。这种低功耗使SOC能够在高温汽车环境中使用被动冷却。

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