This study intends to build a smartbin that segregates solid waste into its respective bins. To make the waste management process more interesting for the end-users; to notify the utility staff when the smart bin needs to be unloaded; to encourage an environment-friendly smart bin by utilizing renewable solar energy source. The researchers employed an Agile Development approach because it enables teams to manage their workloads successfully and create the highest-quality product while staying within their allocated budget. The six fundamental phases are planning, design, development, test, release, and feedback. The Overall quality testing result that was provided through the ISO/IEC 25010 evaluation which concludes a positive outcome. The overall average was 4.55, which is verbally interpreted as excellent. Additionally, the application can also independently run with its solar energy source. Users were able to enjoy the whole process of waste disposal through its interesting mechanisms. Based on the findings, a compressor is recommended to compress the trash when the trash level reaches its maximum point to create more rooms for more garbage. An algorithm to determine multiple garbage at a time is also recommended. Adding a solar tracker coupled with solar panel will help produce more renewable energy for the smart bin.
翻译:本研究旨在构建一种能够将固体废弃物自动分类至对应收集箱的智能垃圾桶。为了提升终端用户的垃圾管理体验,实现当智能垃圾桶需清空时向管理人员发送通知,并通过利用可再生太阳能资源推动环境友好型智能垃圾桶的发展。研究人员采用敏捷开发方法,因其能使团队有效管理工作负荷,在预算范围内开发出最高质量的产品。该方法包含六个基本阶段:规划、设计、开发、测试、发布与反馈。通过ISO/IEC 25010标准评估的总体质量测试结果呈现积极结论,总体平均得分为4.55,对应"优秀"的定性评价。此外,该应用可完全依靠太阳能能源独立运行。用户通过其趣味性机制得以享受整个垃圾处理流程。基于研究结果,建议在垃圾高度达到上限时启用压缩装置以增加存储容量,同时建议开发可同时识别多种垃圾的算法。在太阳能板基础上加装太阳能追踪器,将有助于为智能垃圾桶生产更多可再生能源。