一种用于圆柱形物体直径测量的低成本旋转红外扫描仪

N. M. Thamrin, N. M. Arshad, R. Adnan, R. Sam, N. A. Razak, M. F. Misnan, S. F. Mahmud
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引用次数: 2

摘要

本文提出了一种基于现有的两三角形形成技术确定圆柱形物体直径的新方法。该软硬件系统轻量级、计算方便、实用高效,可应用于农业领域的无人机平台,实现基于同步定位和绘图技术的行检测和导航技术。这种方法是专门针对小型无人机提出的,由于其巨大的重量和尺寸,大量的装置或设备不受欢迎。在农业领域中,最有效的检测和测量树木直径大小的方法是应用精确的激光测距仪,并将其与其他可能的传感器(如视觉传感器)相结合。遗憾的是,现有的商用激光测距仪价格昂贵,体积庞大,而且所有数据都是通过通用串行总线通信协议获取的,这对于机载无人机的探测和导航实现来说是不切实际的,因为需要计算机和强大的处理器。因此,在我们的创新研究中,我们使用了一种非侵入式红外传感器,因为它为圆柱形物体(作为树)的边缘检测提供了窄光束。该传感器安装在数字伺服电机上,以模仿市场上可用的激光测距仪的旋转操作。在变直径圆柱形物体上进行了一系列实验,验证了该方法的有效性和高效性。结果表明,该方法可用于确定圆柱形物体的尺寸,误差最小且可接受,并且结果与其他方法相当。
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A low-cost rotational infrared scanner for cylindrical object diameter measurement
This paper presents a new approach in determining the diameter of cylindrical object based on the available two triangles formation technique. The proposed hardware-software system is useful to be implemented on an unmanned aerial vehicle platform in the agriculture field for row detection and navigation techniques based on simultaneous localization and mapping technique as it offers a lightweight system, hassle-free computation and yet a practical and efficient approach. This approach is proposed purposely for small-scaled unmanned aerial vehicle where substantial devices or equipments is unwelcome due to its enormous weight and size. The most efficient way to detect and measure the diameter size of the trees in the agriculture field is by applying the precise laser range finder as well as combines it with other possible sensors such as vision sensors in many approaches before. Unfortunately, the available commercial product of a laser range finder is found to be expensive, bulky and all the data is acquired through a universal serial bus communication protocol which proves to be impractical for on-board UAV detection and navigation implementation as computer and robust processors is necessitated. Thus, in our innovative research, a non-intrusive infrared sensor is used as it offers a narrow beam for edge detection of the cylindrical object (treated as the tree). This sensor is mounted on a digital servo motor to imitate the rotational operation of the available laser range finder in the market. Series of experiments are executed on varying diameter of cylindrical objects, and the effectiveness and efficiency of this approach are carried out. It is found that, this technique is usable in determining the size of the cylindrical objects with a minimal and acceptable error as well as the outcome is comparable with other approaches.
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