A Study on the Integration of Solar Energy and IoT in a Smart Parcel Drop Box as a Model for Sustainable Green Technology Application

Authors

  • Nur Rafiqah Rosly Politeknik Melaka
  • Noor Haslyena Hassan Politeknik Melaka
  • Mohamad Shahril Ibrahim Politeknik Kuching Sarawak
  • Noor Mayafaraniza Kosnan Politeknik Melaka

Keywords:

Solar Energy, Internet of Things (IoT), Smart Parcel Drop Box, green technology, sustainable logistics

Abstract

Introduction/Main Objectives: This study assesses the integration of solar energy technology with the Internet of Things (IoT) in designing an energy-efficient and eco-friendly Smart Parcel Drop Box (SPDB) system. The rise of e-commerce has led to parcel loss, damages, and poor delivery reception, while existing automation systems rely on grid electricity, increasing operational costs and carbon footprints.

Background Problems: Most automated parcel systems remain grid-dependent, causing high expenses and environmental harm. This research addresses the need for a self-operational, energy-efficient solar smart delivery system that reduces grid reliance and supports Malaysia’s National Green Technology Policy 2030, SDG 7 (Affordable and Clean Energy), and SDG 13 (Climate Action).

Research Methods: A prototype was designed using an ESP32 microcontroller, infrared (IR) sensors, a 1602 LCD display, and the Blynk IoT platform. The energy source was a 30W (12V) monocrystalline solar panel connected to a 12V 7Ah battery via a charge controller. A 14-day field test measured energy generation, consumption, operational efficiency, and battery voltage stability.

Finding/Results: The solar panel produced 0.15 kWh/day, while the IoT system consumed 0.049 kWh/day, achieving 32.6% efficiency. Monthly savings per unit were RM22.80, reducing CO₂ emissions by 34.2 kg/year per unit. For 100 community units, annual emission reduction reaches 3.42 tons CO₂.

Conclusion: The SPDB system demonstrates that solar-integrated IoT automation is a powerful sustainable green technology model. It enhances parcel security, reduces grid dependency, saves costs, and supports national and global sustainability goals. Future improvements include dual-sided panels, lithium batteries, and integration with Smart Campus initiatives.

References

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Published

21-01-2026

How to Cite

Rosly, N. R., Hassan, N. H., Ibrahim, M. S., & Kosnan, N. M. (2026). A Study on the Integration of Solar Energy and IoT in a Smart Parcel Drop Box as a Model for Sustainable Green Technology Application . Proceeding Economy of Asia International Conference, 2025(1), 1433–1439. Retrieved from https://conference.asia.ac.id/index.php/ecosia/article/view/240

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