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Live Demonstration: Real-time motor rotation frequency detection by spike-based visual and auditory AER sensory integration for FPGA

机译:实时演示:基于峰值的视觉和听觉频率检测FPGA的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 much more information from an environment using different and complementary types of sensors. This demonstration presents a scenario where the motor rotation frequency is obtained using an AER DVS128 retina chip (Dynamic Vision Sensor) and a frequency decomposer auditory system on a FPGA that mimics a biological cochlea. Both of them are spike-based sensors with Address-Event-Representation (AER) outputs. A new AER monitor hardware interface, based on a Spartan-6 FPGA, allows two operational modes: real-time (up to 5 Mevps through USB2.0) and off-line mode (up to 20Mevps and 33.5Mev stored in DDR RAM). The sensory integration allows the bio-inspired cochlea limit to provide a concrete range of rpm approaches, which are obtained by the silicon retina.
机译:多福管集成通常用于各种机器人区域,以使用不同和互补类型的传感器来收集来自环境的更多信息。该演示提出了一种场景,其中使用AER DVS128视网膜芯片(动态视觉传感器)和模拟生物学耳蜗的FPGA上的频率分解器听觉系统获得电机旋转频率。它们都是基于峰值的传感器,具有地址事件 - 表示(AER)输出。基于Spartan-6 FPGA的新型AER监视器硬件接口允许两种操作模式:实时(最多5个MEVP通过USB2.0)和离线模式(最多20MEVPS和33.5MEV存储在DDR RAM中) 。感觉整合允许生物启发的耳蜗限制提供由硅视网膜获得的RPM方法的混凝土范围。

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