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Real-time motor rotation frequency detection with event-based visual and spike-based auditory AER sensory integration for FPGA

机译:通过基于事件的视觉和基于峰值的听觉AER感官集成进行实时电机旋转频率检测

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Multisensory integration is commonly used in various robotic areas to collect more environmental information using different and complementary types of sensors. Neuromorphic engineers mimics biological systems behavior to improve systems performance in solving engineering problems with low power consumption. This work presents a neuromorphic sensory integration scenario for measuring the rotation frequency of a motor using an AER DVS128 retina chip (Dynamic Vision Sensor) and a stereo auditory system on a FPGA completely event-based. Both of them transmit information with Address-Event-Representation (AER). This integration system uses a new AER monitor hardware interface, based on a Spartan-6 FPGA that allows two operational modes: real-time (up to 5 Mevps through USB2.0) and data logger mode (up to 20Mevps for 33.5Mev stored in onboard DDR RAM). The sensory integration allows reducing prediction error of the rotation speed of the motor since audio processing offers a concrete range of rpm, while DVS can be much more accurate.
机译:多传感器集成通常用于各种机器人领域,以使用不同和互补类型的传感器收集更多的环境信息。 Neuromorphic工程师模仿生物系统的行为以改善系统性能,从而以低功耗解决工程问题。这项工作提出了一种神经形态感觉集成方案,该方案使用完全基于事件的FPGA上的AER DVS128视网膜芯片(动态视觉传感器)和立体声听觉系统来测量电机的旋转频率。两者都使用地址事件表示(AER)传输信息。该集成系统使用基于Spartan-6 FPGA的新AER监控器硬件接口,该接口支持两种操作模式:实时(通过USB2.0高达5 Mevps)和数据记录器模式(对于存储在其中的33.5Mev高达20Mevps)板载DDR RAM)。由于音频处理提供了具体的rpm范围,因此感官集成可以减少电动机转速的预测误差,而DVS可以更精确。

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