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The Multi-Chamber Electronic Nose—An Improved Olfaction Sensor for Mobile Robotics

机译:多室电子鼻—一种改进的移动机器人嗅觉传感器

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摘要

One of the major disadvantages of the use of Metal Oxide Semiconductor (MOS) technology as a transducer for electronic gas sensing devices (e-noses) is the long recovery period needed after each gas exposure. This severely restricts its usage in applications where the gas concentrations may change rapidly, as in mobile robotic olfaction, where allowing for sensor recovery forces the robot to move at a very low speed, almost incompatible with any practical robot operation. This paper describes the design of a new e-nose which overcomes, to a great extent, such a limitation. The proposed e-nose, called Multi-Chamber Electronic Nose (MCE-nose), comprises several identical sets of MOS sensors accommodated in separate chambers (four in our current prototype), which alternate between sensing and recovery states, providing, as a whole, a device capable of sensing changes in chemical concentrations faster. The utility and performance of the MCE-nose in mobile robotic olfaction is shown through several experiments involving rapid sensing of gas concentration and mobile robot gas mapping.
机译:使用金属氧化物半导体(MOS)技术作为电子气体传感设备(电子噪声)的传感器的主要缺点之一是每次暴露于气体后都需要较长的恢复时间。这严重限制了其在气体浓度可能快速变化的应用中的使用,例如在移动式机器人嗅觉中,在这种情况下,允许传感器恢复迫使机器人以非常低的速度运动,几乎与任何实际机器人操作都不兼容。本文介绍了在很大程度上克服了这种局限性的新型电子鼻的设计。拟议中的电子鼻被称为多腔电子鼻(MCE-nose),包括容纳在不同腔室中的几套相同的MOS传感器(在我们当前的原型中为四腔),它们在感应状态和恢复状态之间交替,从而提供了一个整体,该设备能够更快地感应化学浓度的变化。 MCE鼻在移动机器人嗅觉中的实用性和性能通过多个实验进行了展示,这些实验涉及气体浓度的快速检测和移动机器人的气体映射。

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