论文标题

开发和测试智能垃圾箱,以自动饲养黑色士兵蝇幼虫

Development and Testing of a Smart Bin toward Automated Rearing of Black Soldier Fly Larvae

论文作者

Avila, Kevin Urrutia, Campbell, Merrick, Mauck, Kerry, Gebiola, Marco, Karydis, Konstantinos

论文摘要

黑色士兵蝇(BSF)可以是传统处理食物和农业废物(生物塑料)的有效替代品,例如垃圾填埋场,因为其幼虫能够迅速将生物塑料转变为现成的生物量。但是,要确保BSF耕作在不同规模上可行,并且可以广泛实施,仍然存在一些挑战。需要手动劳动,以确保从充气喂养基板到监测生长周期中的非生物条件,以确保最佳条件延长幼虫。本文介绍了一种概念验证的自动化方法,用于饲养BSF幼虫,以确保最佳的生长条件,同时减少体力劳动。我们用“智能盖子”改造现有的BSF饲养箱,称其为盖子的热盘性质,并带有多个垃圾箱。该系统会自动为幼虫底物曝气,并实时向用户提供幼虫的生物信息。提出的解决方案使用自定义曝气方法和一系列传感器来创建软的实时系统。使用热成像和经典计算机视觉技术监测幼虫的生长。实验测试表明,我们的自动化方法与手动技术相当产生BSF幼虫。

The Black Soldier Fly (BSF), can be an effective alternative to traditional disposal of food and agricultural waste (biowaste) such as landfills because its larvae are able to quickly transform biowaste into ready-to-use biomass. However, several challenges remain to ensure that BSF farming is economically viable at different scales and can be widely implemented. Manual labor is required to ensure optimal conditions to rear the larvae, from aerating the feeding substrate to monitoring abiotic conditions during the growth cycle. This paper introduces a proof-of-concept automated method of rearing BSF larvae to ensure optimal growing conditions while at the same time reducing manual labor. We retrofit existing BSF rearing bins with a "smart lid," named as such due to the hot-swappable nature of the lid with multiple bins. The system automatically aerates the larvae-diet substrate and provides bio-information of the larvae to users in real time. The proposed solution uses a custom aeration method and an array of sensors to create a soft real time system. Growth of larvae is monitored using thermal imaging and classical computer vision techniques. Experimental testing reveals that our automated approach produces BSF larvae on par with manual techniques.

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