基于物联网和树莓派模块的太阳能闭环蠕虫堆肥系统的开发

Aaron U. Aquino, Dustin G. Baylon, Francis Paul B. Dela Cruz, Ma. Armae Hazel Joy M. Medina, Girlie A. Reyes, Jascha Mae L. Tulauan, Timothy M. Amado, J. M. Ramos, L. K. Tolentino, E. Fernandez
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引用次数: 2

摘要

蚯蚓堆肥是一种低成本的技术,通过蚯蚓和中温微生物的共同作用,将有机废物自然转化为有机肥料,通常称为蚯蚓堆肥。重要的参数,如湿度和温度,必须考虑在蚯蚓堆肥生产达到最佳产量。然而,手动监测和纠正这些参数并不能保证结果。此外,传统的收集蚯蚓堆肥的过程耗时较长,需要更多的人为干预。作为一种解决方案,支持者介绍了一种系统的开发,该系统可以监控和纠正这些重要参数,使用数字图像处理确定蚯蚓堆肥的准备情况,并自动筛选蚯蚓堆肥。系统采用树莓派微控制器、传感器和android手机进行监控。为了测量系统的可靠性和效率,支持者进行了两种蚯蚓堆肥系统的设置-一种是受控的,另一种是不受控的。从收集到的数据来看,自动化系统在生产时间、产量质量和数量上都超过了后者。
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Development of a Solar-Powered Closed-Loop Vermicomposting System with Automatic Monitoring and Correction via IoT and Raspberry Pi Module
Vermicomposting is a low-cost technology that naturally converts organic wastes into organic fertilizers, commonly called vermicompost, through the combined action of earthworms and mesophilic microorganisms. Vital parameters, such as moisture and temperature, must be considered in the vermicompost production to achieve optimum yield. However, manual monitoring and correction of these said parameters do not give guaranteed results. Also, the traditional process of harvesting vermicompost consumes longer time and requires more human intervention. As a solution, the proponents introduced the development of a system which monitors and corrects these vital parameters, determines the readiness of vermicompost for harvest using digital image processing, and automatically sieves the vermicompost. The system uses Raspberry Pi microcontroller, sensors, and an android phone for monitoring. To measure the system’s reliability and efficiency, the proponents conducted two setups of vermicomposting system – one controlled and the other uncontrolled. From the data gathered, the automated system surpassed the latter in terms of production time, yield quality and quantity.
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