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FPGA-Based Tactile Sensor Suite Electronics for Real-Time Embedded Processing

机译:用于实时嵌入式处理的基于FPGA的触觉传感器套件电子

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摘要

Dexterity in robotic hands is not enough to cover the demands for more flexibility in the manufacturing process. Specifically, processes that involve cooperation or learning from humans, slippage detection and tactile feedback to improve grasp stability when different objects are manipulated, object exploration and classification, quality inspection, welding, etc. The sense of touch is the key to the capabilities of human hands, so tactile sensors must be incorporated into robotic hands to improve them. However, tactile sensing technology is not yet mature enough to be an effective tool. One reason for this limited performance is the need of acquisition and processing of large amounts of data in the short time required to perform a fluent manipulation. Smart tactile sensors can help in this goal if they are able to carry out local acquisition and processing of tactile data and transmit only relevant information through buses that guarantee bounded latency. Field-programmable gate arrays (FPGAs) are devices which are especially suitable for this task due to their ability for parallel processing. This paper presents the realization of electronics for a tactile sensor suite based on FPGAs that implements a direct interface with the raw sensor and serial communication between the fingertips and palm.
机译:机械手的敏捷性不足以满足制造过程中更大灵活性的需求。具体而言,涉及与人类合作或学习,滑移检测和触觉反馈以改善在操作不同物体时的抓握稳定性,物体探索和分类,质量检查,焊接等过程。触摸感是人类能力的关键手,因此必须将触觉传感器集成到机械手中以进行改进。但是,触觉传感技术还不够成熟,无法成为有效的工具。性能受到限制的原因之一是需要在短时间内执行流畅的操作来获取和处理大量数据。如果智能触觉传感器能够进行触觉数据的本地采集和处理,并且仅通过保证有限等待时间的总线传输相关信息,则它们可以帮助实现此目标。现场可编程门阵列(FPGA)由于具有并行处理能力,因此特别适合此任务。本文介绍了基于FPGA的触觉传感器套件的电子实现,该FPGA实现了与原始传感器的直接接口以及指尖和手掌之间的串行通信。

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