Project Phase 1
Team Details:
Divya A : 412421105009
Keerthana P : 412421105023
College Name : Sri Sai Ram Institute of technology
Supervisor Name And Designation: Dr.R.Dhanasekar
, SDGs and TARGETs
1. Primary Goal No : 7- Affordable and clean energy
1. SDG TARGET1: By 2030 ensure universal access to affordable , reliable, and modern energy services.
2. SDG TARGET2: By 2030, increase substantially the share of renewable energy in the global energy mix.
3. SDG TARGET3: By 2030 double the global rate of improvement in energy efficiency.
2. Secondary Goal No : 14-Life below water
1. SDG TARGET1: By 2025, prevent and significantly reduce marine pollution of all kinds, particularly from land based activities,
marine debris and nutrient pollution
2. SDG TARGET2: By 2020, sustainably manage and protect marine and coastal eco systems to avoid significant adverse impacts, inclu
strengthening their resilience, and take action for their restoration to achieve healthy and productive oceans.
3. SDG TARGET3: Minimize and address the impact of ocean acidification including through enhanced scientific co operation at all leve
3. Tertiary Goal No : 9- Industry innovation and infrastructure
1. SDG TARGET1: Develop quality, reliable, sustainable, and resilient infrastructure, including reginal and transborder infrastructure, to
economic development and human well being, with a focus on affordable and equitable access for all.
2. SDG TARGET2: Promote inclusive and sustainable industrialization and by 2030 significantly raise industry’s share of employment a
domestic product in line, national circumstances, and double its share in least development countries.
3. SDG TARGET3: Increase the access of small scale industrial and other enterprises, in particular in developing countries to financial se
affordable credit and their integration into value chains and markets.
, Problem Statement
Design and implement a solar energy monitoring system tailored for a buoyed IoT o
observation platform. The system should efficiently capture, analyze, and optimize s
power generation to ensure sustained and reliable operation of the ocean observation
platform in diverse marine environments. Consider challenges such as variable weat
conditions, fluctuating sea states, and the need for minimal maintenance
Develop a solar energy monitoring system tailored for an IoT-based ocean observatio
platform to efficiently capture, store, and utilize solar power in remote marine enviro
Address the unique challenges of implementing solar energy solutions on buoyed Io
platforms, including variable weather conditions, saltwater exposure, limited space f
equipment, and the need for robust, low-maintenance systems.