The Impact of Stabilization Time on Lumen and Electrical Power in LED Tube Lamp Testing

Abstract

In 2022, the Indonesian Government issued a policy regarding Minimum Energy Performance Standards (MEPS) and energy-saving mark labels for Light Emitting Diode (LED) lamps. Therefore, testing laboratories or lamp manufacturers should know that the stabilization time will affect the test results. LED lumen changes rapidly during the first 30 minutes, so taking data earlier during the test may lead to different test results. The results also show that the lumen fluctuation will be lower when the run time is 45 minutes or more. Stabilization time is essential when measuring LED tube lights, so a stabilization time of 45 minutes is the most effective for data collection.

Country : Indonesia

1 Zulramadhanie2 Jaka Windarta3 Cahyadi

  1. Master Program of Energy, School of Postgraduate Studies, Diponegoro University, Indonesia & The National Research and Innovation Agency, Indonesia
  2. Master Program of Energy, School of Postgraduate Studies, Diponegoro University, Indonesia
  3. The National Research and Innovation Agency, Indonesia

IRJIET, Volume 8, Issue 5, May 2024 pp. 71-75

doi.org/10.47001/IRJIET/2024.805010

References

  1. IEA, “Net Zero by 2050: A Roadmap for the Global Energy Sector,” Int. Energy Agency, p. 224, 2021, [Online]. Available: https://www.iea.org/reports/net-zero-by-2050
  2. DEN, “Neraca Energi Nasional 2020,” Lap. Kaji. Penelahaan Neraca Energi Nas. 2020, p. 14, 2020.
  3. IEA, “Targeting 100% LED lighting sales by 2025,” 2022. https://www.iea.org/reports/targeting-100-led-lighting-sales-by-2025
  4. C. Ji, W. Xu, Q. Han, T. Zhao, J. Deng, and Z. Peng, “Light of carbon: Recent advancements of carbon dots for LEDs,” Nano Energy, vol. 114, no. December 2022, p. 108623, 2023, doi: 10.1016/j.nanoen.2023.108623.
  5. S. Palaloi, E. Nurdiana, and A. Wibowo, “Pengujian Dan Analisis Kinerja Lampu Tl Led Untuk Pencahayaan Umum,” J. Stand., vol. 20, no. 1, p. 77, 2018, doi: 10.31153/js.v20i1.680.
  6. S. Palaloi, “Pengujian Dan Analisis Umur Pakai Lampu Light Emitting Diode (Led) Swabalast Untuk Pencahayaan Umum,” J. Energi dan Lingkung., vol. 11, no. 1, 2015, doi: 10.29122/elk.v11i1.1586.
  7. P. Morgan Pattison, M. Hansen, and J. Y. Tsao, “LED lighting efficacy: Status and directions,” Comptes Rendus Phys., vol. 19, no. 3, pp. 134–145, 2018, doi: 10.1016/j.crhy.2017.10.013.
  8. W. R. Ryckaert, K. A. G. Smet, I. A. A. Roelandts, M. Van Gils, and P. Hanselaer, “Linear LED tubes versus fluorescent lamps: An evaluation,” Energy Build., vol. 49, pp. 429–436, 2012, doi: 10.1016/j.enbuild.2012.02.042.
  9. M. Padmanabha and S. Streif, “Design and validation of a low cost programmable controlled environment for study and production of plants, mushroom, and insect larvae,” Appl. Sci., vol. 9, no. 23, 2019, doi: 10.3390/app9235166.
  10. ESDM, “Kepmen ESDM no. 135 tentang Standard Kinerja Energi Minimum dan Label Tanda Hemat Energi untuk Peralatan Pemanfaat Energi Lampu Light Emitting Diode (LED),” Kementerian Energi dan Sumber Daya Mineral Republik Indonesia. 2022.
  11. S. Sakar, S. Ronnberg, and M. H. J. Bollen, “Light intensity behavior of LED lamps within the thermal stabilization period,” Proc. Int. Conf. Harmon. Qual. Power, ICHQP, vol. 2018-May, pp. 1–6, 2018, doi: 10.1109/ICHQP.2018.8378917.