Carla Román, H. Jeon, Heping Zhu, Javier Campos, E. Ozkan
{"title":"Stereo Vision Controlled Variable Rate Sprayer for Specialty Crops: Part II. Sprayer Development and Performance Evaluation","authors":"Carla Román, H. Jeon, Heping Zhu, Javier Campos, E. Ozkan","doi":"10.13031/ja.15578","DOIUrl":null,"url":null,"abstract":"Highlights A real time stereo vision controlled variable rate sprayer for specialty crops was developed. The stereo vision system of the sprayer detected outdoor trees with similar canopy profiles under travel speeds ranging from 3.2 to 8 km h-1. Canopy volume measurements of the sprayer were impacted by lateral distances between the sprayer and the tree center and travel speeds. The sprayer required less than 200 ms from tree canopy detection to spray decisions. The sprayer achieved spray volume reductions from 72.6% to 80.5% compared to constant rate spray application. Abstract. A real time variable rate sprayer controlled by a stereo vision system was developed to increase the accuracy of spray applications and reduce the use of crop protection products. The sprayer was designed to detect tree canopies and calculate its volume using depth images from the stereo vision system, and discharge corresponding spray volumes every 200 ms through the embedded software in the graphical user interface. The sprayer was evaluated in an apple orchard at different travel speeds (3.2 to 8.0 km h-1) for its performance in detecting canopy and measuring its volume. In addition, spray volume, deposition, and coverage of the variable rate application of the sprayer were evaluated against a constant rate application. Test results showed that the sprayer detected visually similar tree canopies during the evaluations, although its canopy volume measurements deviated from manually measured canopy volume from 0.11 to 0.83 m3 due to lateral position changes of the sprayer. The sprayer adjusted duty cycles of pulse width modulated valves to accurately spray the intended volume for detected canopies (0.073 to 0.083 L m-3) and only used spray volumes of 19.5% to 26.7% compared to a constant rate spray application (338 L ha-1). The constant rate spray application generally had more spray deposition and coverage in tree canopies than the variable rate sprayer, as expected since its spray volume was approximately 3.7 times higher. However, the mean spray depositions from the constant rate spray application were significantly varied (p=0.05) by tree sizes, while the variable rate spray application achieved statistically equivalent mean spray depositions regardless of tree sizes. The stereo vision controlled sprayer offers a cost-effective real-time variable rate spray option for growers with the potential to perform other tasks by using image processing algorithms while applying crop protection products. Keywords: Automation, Canopy volume, Crop protection, Depth image, Orchard, Precision agriculture, Real-time application.","PeriodicalId":29714,"journal":{"name":"Journal of the ASABE","volume":"43 1","pages":""},"PeriodicalIF":1.0000,"publicationDate":"2023-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of the ASABE","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.13031/ja.15578","RegionNum":4,"RegionCategory":"农林科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"AGRICULTURAL ENGINEERING","Score":null,"Total":0}
引用次数: 1
Abstract
Highlights A real time stereo vision controlled variable rate sprayer for specialty crops was developed. The stereo vision system of the sprayer detected outdoor trees with similar canopy profiles under travel speeds ranging from 3.2 to 8 km h-1. Canopy volume measurements of the sprayer were impacted by lateral distances between the sprayer and the tree center and travel speeds. The sprayer required less than 200 ms from tree canopy detection to spray decisions. The sprayer achieved spray volume reductions from 72.6% to 80.5% compared to constant rate spray application. Abstract. A real time variable rate sprayer controlled by a stereo vision system was developed to increase the accuracy of spray applications and reduce the use of crop protection products. The sprayer was designed to detect tree canopies and calculate its volume using depth images from the stereo vision system, and discharge corresponding spray volumes every 200 ms through the embedded software in the graphical user interface. The sprayer was evaluated in an apple orchard at different travel speeds (3.2 to 8.0 km h-1) for its performance in detecting canopy and measuring its volume. In addition, spray volume, deposition, and coverage of the variable rate application of the sprayer were evaluated against a constant rate application. Test results showed that the sprayer detected visually similar tree canopies during the evaluations, although its canopy volume measurements deviated from manually measured canopy volume from 0.11 to 0.83 m3 due to lateral position changes of the sprayer. The sprayer adjusted duty cycles of pulse width modulated valves to accurately spray the intended volume for detected canopies (0.073 to 0.083 L m-3) and only used spray volumes of 19.5% to 26.7% compared to a constant rate spray application (338 L ha-1). The constant rate spray application generally had more spray deposition and coverage in tree canopies than the variable rate sprayer, as expected since its spray volume was approximately 3.7 times higher. However, the mean spray depositions from the constant rate spray application were significantly varied (p=0.05) by tree sizes, while the variable rate spray application achieved statistically equivalent mean spray depositions regardless of tree sizes. The stereo vision controlled sprayer offers a cost-effective real-time variable rate spray option for growers with the potential to perform other tasks by using image processing algorithms while applying crop protection products. Keywords: Automation, Canopy volume, Crop protection, Depth image, Orchard, Precision agriculture, Real-time application.
研制了一种实时立体视觉控制的特种作物可变速率喷雾器。喷雾器的立体视觉系统在行驶速度从3.2到8 km - h-1的范围内检测到具有相似树冠轮廓的室外树木。喷雾器的冠层体积测量值受喷雾器与树中心的横向距离和速度的影响。该喷雾器从树冠检测到喷雾决策所需时间不到200毫秒。与恒速喷雾相比,该喷雾器的喷雾体积减少了72.6%至80.5%。摘要开发了一种由立体视觉系统控制的实时可变速率喷雾器,以提高喷雾应用的准确性并减少作物保护产品的使用。喷雾器利用立体视觉系统的深度图像检测树冠并计算树冠体积,并通过图形用户界面中的嵌入式软件每200 ms喷射相应的喷雾体积。在一个苹果园中,以不同的行驶速度(3.2 ~ 8.0 km h-1)对喷雾器进行了树冠探测和树冠体积测量。此外,喷雾量,沉积和覆盖的可变速率应用的喷雾器进行了评估相对于恒定速率应用。试验结果表明,在评价过程中,喷雾器检测到的树冠在视觉上相似,但由于喷雾器横向位置的变化,其测量的树冠体积与人工测量的树冠体积在0.11 ~ 0.83 m3之间存在偏差。喷雾器调整脉宽调节阀的占空比,以准确地喷射检测到的树冠的预期体积(0.073至0.083 L m-3),与恒定速率喷雾应用(338 L ha-1)相比,喷雾体积仅为19.5%至26.7%。恒定速率喷雾器通常比可变速率喷雾器在树冠上有更多的喷雾沉积和覆盖,正如预期的那样,因为其喷雾量约为3.7倍。然而,恒定速率喷雾剂的平均喷雾沉积随树木大小而显著变化(p=0.05),而无论树木大小如何,可变速率喷雾剂的平均喷雾沉积在统计学上都是相等的。立体视觉控制喷雾器为种植者提供了一种具有成本效益的实时可变速率喷雾器,可以在应用作物保护产品时使用图像处理算法执行其他任务。关键词:自动化,冠层体积,作物保护,深度图像,果园,精准农业,实时应用