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Proceedings ArticleDOI

IoT Platform to augment Solar Tree as Smart Highway Street Light with Ambient Monitoring Capability

TLDR
The presented IoT network aims for enhancing the capabilities of the solar tree beyond just a power generation device to an application such as security, surveillance, pollution monitoring and many more.
Abstract
The presented work describes an interconnected multi-server IoT network for monitoring and control of smart solar tree. The IoT enabled solar tree is introduced as a smart street light with air quality monitoring capability and has been implemented in the Central Electronics Engineering Research Institute, Pilani. The presented network is a three-layer architecture with a sensor node at the lowermost layer for collecting the sensor data. The solar tree server above it performs the sampling of the data by triggering the software for sensor node. Upon successful data collection, the tree server communicates the same to the central server which is responsible for aggregation, visualization, storage, analysis and control of all the connected solar trees. The paper also discusses the implementation aspect of the network and presents the collected data from the solar tree. The presented IoT network aims for enhancing the capabilities of the solar tree beyond just a power generation device to an application such as security, surveillance, pollution monitoring and many more. At present, the work discussed is towards self-sustained street light with ambient monitoring capability.

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Citations
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Journal ArticleDOI

Solar photovoltaic tree multi aspects analysis − a review

TL;DR: In this article , the photovoltaic solar tree is used to increase the efficiency of PV systems by reducing the occupied area and optimizing the orientation angles of the panels, which can be used for other purposes such as crop production and parking.
Journal ArticleDOI

Case Study: RTU on the Way to Participate in Race to Zero Challenge

TL;DR: In this article , different renewable energy sources (PV, wind generators) have been discussed to be installed around the RTU campus and the profiles of electric power consumption are analyzed for one faculty and sport centre.
References
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Proceedings ArticleDOI

A smart IoT system for monitoring solar PV power conditioning unit

TL;DR: An effective implementation of an intelligent remote monitoring system for solar Photovoltaic (PV) Power Conditioning Unit (PCU) which is used in a greenhouse environment is described.
Journal ArticleDOI

Concurrent Data Collection Trees for IoT Applications

TL;DR: Concurrent data collection trees specifically designed for IoT applications are proposed and it is shown that, comparing with an existing single-user data collection structure, systems with the proposed tree structures can significantly shorten their concurrent data collection processes.
Journal ArticleDOI

Efficient Solar Power Management System for Self-Powered IoT Node

TL;DR: An efficient micro-scale solar power management architecture for self-powered Internet-of-Things node that avoids the linear regulator and presents a complete on-chip switched capacitor-based power converter in order to achieve higher end-to-end efficiency is presented.
Proceedings ArticleDOI

Internet of things (IOT) for smart solar energy: A case study of the smart farm at Maejo University

TL;DR: The results of the research shows that using IOT with voltage and current sensors enhances the prototype of a smart farming as an alternative and green electrical resource.
Journal ArticleDOI

On-Chip Photovoltaic Power Harvesting System With Low-Overhead Adaptive MPPT for IoT Nodes

TL;DR: This paper presents a fully integrated PV power harvesting system with a low-overhead adaptive maximum power point tracking (MPPT) scheme for Internet-of-Things (IoT) nodes and demonstrates that the proposed scheme can track maximum power points under rapidly changing atmospheric conditions with a peak tracking efficiency of 99%.
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