Rokonuzzaman Md, Mishu Mahmuda Khatun, Amin Nowshad, Nadarajah Mithulananthan, Roy Rajib Baran, Rahman Kazi Sajedur, Buhari Adamu Muhammad, Binzaid Shuza, Shakeri Mohammad, Pasupuleti Jagadeesh
Institute of Sustainable Energy (ISE), Universiti Tenaga Nasional (The National Energy University), Kajang 43000, Selangor, Malaysia.
College of Engineering (COE), Universiti Tenaga Nasional (The National Energy University), Kajang 43000, Selangor, Malaysia.
Micromachines (Basel). 2021 Jun 2;12(6):653. doi: 10.3390/mi12060653.
Conventional wireless sensor networks (WSNs) in smart home-building (SHB) are typically driven by batteries, limiting their lifespan and the maximum number of deployable units. To satisfy the energy demand for the next generation of SHB which can interconnect WSNs to make the internet of smart home-building (IoSHB), this study introduces the design and implementation of a 250 mW to 2.3 W energy harvesting device. The proposed device is dynamically autonomous owing to the integration of embedded solar photovoltaic (PV) modules and power storage through a supercapacitor (SC; 5 V, 0.47 F) capable of powering WSNs for 95 s (up to 4.11 V). The deployed device can harvest indoor and outdoor ambient light at a minimum illumination of 50 lux and a maximum illumination of 200 lux. Moreover, the proposed system supports wireless fidelity (Wi-Fi) and Bluetooth Low Energy (BLE) to do data transfer to a webserver as a complete internet of things (IoT) device. A customized android dashboard is further developed for data monitoring on a smartphone. All in all, this self-powered WSN node can interface with the users of the SHBs for displaying ambient data, which demonstrates its promising applicability and stability.
智能家居建筑(SHB)中的传统无线传感器网络(WSN)通常由电池驱动,这限制了它们的使用寿命和可部署单元的最大数量。为了满足下一代智能家居建筑(能够将WSN互连以构建智能家居建筑物联网(IoSHB))的能源需求,本研究介绍了一种250毫瓦至2.3瓦能量收集装置的设计与实现。由于集成了嵌入式太阳能光伏(PV)模块以及通过超级电容器(SC;5伏,0.47法拉)进行的能量存储,所提出的装置具有动态自主性,该超级电容器能够为WSN供电95秒(最高可达4.11伏)。所部署的装置能够在最低50勒克斯、最高200勒克斯的光照条件下收集室内和室外的环境光。此外,所提出的系统支持无线保真(Wi-Fi)和低功耗蓝牙(BLE),以便作为一个完整的物联网(IoT)设备将数据传输到网络服务器。还进一步开发了一个定制的安卓仪表盘,用于在智能手机上进行数据监测。总而言之,这个自供电的WSN节点可以与智能家居建筑的用户进行交互,以显示环境数据,这证明了其具有广阔的应用前景和稳定性。