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Design and Performance Analysis of an Intrinsically Safe Ultrasonic Ranging Sensor

机译:本安型超声波测距传感器的设计与性能分析

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摘要

In flammable or explosive environments, an ultrasonic sensor for distance measurement poses an important engineering safety challenge, because the driving circuit uses an intermediate frequency transformer as an impedance transformation element, in which the produced heat or spark is available for ignition. In this paper, an intrinsically safe ultrasonic ranging sensor is designed and implemented. The waterproof piezoelectric transducer with integrated transceiver is chosen as an energy transducing element. Then a novel transducer driving circuit is designed based on an impedance matching method considering safety spark parameters to replace an intermediate frequency transformer. Then, an energy limiting circuit is developed to achieve dual levels of over-voltage and over-current protection. The detail calculation and evaluation are executed and the electrical characteristics are analyzed to verify the intrinsic safety of the driving circuit. Finally, an experimental platform of the ultrasonic ranging sensor system is constructed, which involves short-circuit protection. Experimental results show that the proposed ultrasonic ranging sensor is excellent in both ranging performance and intrinsic safety.
机译:在易燃或爆炸性环境中,用于距离测量的超声波传感器提出了重要的工程安全挑战,因为驱动电路将中频变压器用作阻抗转换元件,在其中产生的热量或火花可用于点火。本文设计并实现了一种本质安全的超声波测距传感器。选择带有集成收发器的防水压电传感器作为能量转换元件。然后基于阻抗匹配方法设计了一种新型的传感器驱动电路,该方法考虑了安全火花参数,以代替中频变压器。然后,开发了一种能量限制电路以实现双级过压和过流保护。执行详细的计算和评估,并分析电气特性,以验证驱动电路的本质安全性。最后,构建了具有短路保护功能的超声测距传感器系统的实验平台。实验结果表明,所提出的超声波测距传感器在测距性能和本质安全性两方面均表现出色。

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