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A 27mW reconfigurable marker-less logarithmic camera pose estimation engine for mobile augmented reality processor

机译:用于移动增强现实处理器的27MW可重新配置的标记数对数相机姿势估计引擎

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A marker-less Camera Pose Estimation Engine (CPEE) with reconfigurable logarithmic processor is proposed for the view angle estimation in the low-power mobile Augmented Reality (AR) applications. The proposed CPEE is required to overcome 150x huge gap in computational cost for marker-less pose estimation including floating-point operations resulting in the bottlenecks in mobile platforms. Speculative Execution (SE) and Reconfigurable Data-arrangement Layer (RDL) are proposed to reduce the computing time of CPEE by 17% and 27%, respectively. For low-power implementation of floating-point units, Logarithmic Processing Element (LPE) is used to reduce overall power consumption by 18% with maximum conversion error under 0.49%. The proposed marker-less CPEE is fabricated in 65nm Logic CMOS technology, and successfully realizes real-time marker-less camera pose estimation with only 27mW power consumption.
机译:利用可重新配置的对数处理器的标记相机姿势估计引擎(CPEE)被提出用于低功率移动增强现实(AR)应用中的视角估计。所提出的CPEE必须在计算成本中克服150倍的计算成本巨大差距,包括浮点操作,从而导致移动平台中的瓶颈。提出了推测执行(SE)和可重新配置的数据布置层(RDL)以分别将CPEE的计算时间减少17%和27%。对于浮点单元的低功耗实现,对数处理元件(LPE)用于将总功耗降低18%,最大转换误差为0.49%。所提出的标记CPEE在65nm逻辑CMOS技术中制造,并成功实现了仅具有27MW功耗的实时标记相机姿态估计。

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