Smart Sensing And Automated Device Management Using Iot Technology
Keywords:
Arduino, NodeMCU, Moisture Sensor, LDR Sensor, Lm35Abstract
Environmental pollution has emerged as one of the most pressing global challenges of the 21st century, posing
serious threats to human health, ecological balance, and long-term societal well-being. Driven primarily by rapid
industrialization, urbanization, and unsustainable human activities, pollution levels continue to rise across air,
water, and soil ecosystems. In response, there is an increasing emphasis on harnessing advanced technologies to
monitor, predict, and mitigate environmental degradation. The convergence of Wireless Sensor Networks (WSNs)
and the Internet of Things (IoT) has opened new avenues for developing intelligent, sustainable, and responsive
environmental management systems. This project presents the design and development of an embedded, standalone
environmental monitoring system capable of real-time data acquisition, analysis, and energy consumption tracking
in specific environments. The system collects critical environmental parameters and makes them accessible through
a user-friendly web-based application that also provides essential control functionalities. By deploying a network of
embedded sensors, the solution aims to deliver practical, scalable, and effective environmental monitoring
capabilities. While several researchers have previously explored embedded sensor networks for environmental
applications, many existing systems suffer from high implementation costs, complex architectures, and significant
maintenance challenges. The proposed system addresses these limitations by offering a cost-effective, user-friendly,
and easily deployable alternative built on open-source embedded technologies. It leverages an Arduino-based
microcontroller integrated with wireless sensors to monitor environmental conditions and control connected
devices. Data transmission and remote access are facilitated through Wi-Fi communication, enabling seamless real
time monitoring and management from any location with internet connectivity. This approach not only reduces
dependency on expensive proprietary solutions but also promotes wider adoption among educational institutions,
industries, and environmental agencies. By combining affordability with reliable performance, the system
contributes meaningfully toward creating smarter, greener, and more sustainable environments.










