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Development of a practical foolproof system using ultrasonic local positioning

机译:利用超声波局部定位开发实用的防呆系统

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摘要

The objective of this research is to develop a prototype for practical foolproof system which can be used in manual assembly processes. For this purpose, a high-performance and low-cost ultrasonic system is proposed to measure 3D positions of an indoor mobile object. Composed of an ultrasonic sender and a receiver, the system employs ultrasonic time-of-flight (TOF) and trilateration to estimate the positions of the object with an accuracy of few centimeters. To calculate three TOFs, ultrasonic signals are processed full-digitally with a low-cost FPGA, which provides high design flexibility keeping both high performance and low noise. Proposed system is autonomous, so there is no need of an external PC and the system development cost becomes low. As an improved thresholding method to calculate the TOFs, this paper proposes a debounce module, designed in the FPGA, to remove the pulse noises generated during the thresholding. The resulting time delay from the debounce is compensated by a microprocessor for calculating actual TOFs. Lastly, the positions of the mobile object are calculated from the TOFs values by trilateration in the microprocessor. In order to remove measurement noises, both moving average filters and Kalman filters are adopted in calculating the TOFs and positions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是开发一种可以在手动装配过程中使用的实用防呆系统的原型。为此,提出了一种高性能,低成本的超声系统来测量室内移动物体的3D位置。该系统由超声发射器和接收器组成,采用超声飞行时间(TOF)和三边测量技术,以几厘米的精度估算物体的位置。为了计算三个TOF,超声信号通过低成本FPGA进行全数字处理,从而提供了很高的设计灵活性,同时保持了高性能和低噪声。提议的系统是自治的,因此不需要外部PC,并且系统开发成本会降低。作为一种改进的阈值计算方法,本文提出了一种在FPGA中设计的去抖动模块,以消除阈值期间产生的脉冲噪声。防抖动产生的时间延迟由微处理器补偿,以计算实际的TOF。最后,在微处理器中通过三边测量从TOF值计算可移动对象的位置。为了消除测量噪声,在计算TOF和位置时均采用了移动平均滤波器和卡尔曼滤波器。 (C)2015 Elsevier Ltd.保留所有权利。

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