Results of Research into Energy Parameters and Characteristics of LED Lamps

Author:

Beley Valery F.1,Kharitonov Maxim S.1,Kotsar German V.1

Affiliation:

1. Kaliningrad State Technical University

Abstract

Light emitting diode (LED) based solutions for lighting systems, particularly LED lamps, are becoming increasingly more popular due to their high reliability, energy efficiency, long lifetime, and decreasing cost. At the same time, modern semiconductor lighting equipment can be both a source of electromagnetic interference and sensitive to it. Manufacturers of LED lamps provide a few energy parameters and characteristics that make it possible to assess the interaction between the lamp and the electrical network at the design stage, but in some cases, the range of indicators provided does not fully justify the selection of LED-based solutions. The issues of electromagnetic compatibility of LED lamps are considered in the paper. LED lamps, as non-linear elements, are shown to create electromagnetic interference for the electrical network. First, emitting current harmonics, they are consumers of reactive power. The paper considers Russian and foreign documents that regulate energy parameters and characteristics of LED lamps. It is shown that datasheets of LED lamps do not fully represent their energy parameters and characteristics. The paper presents the approaches and methods based on experimental and analytical research for evaluating a wide range of energy parameters and characteristics of LED lamps. Particular attention is paid to the issue of light flicker: the range of luminous flux frequencies that negatively affect human health is shown, approaches to flicker assessment are given. Based on the study of a few LED lamps, a wide spread of their energy parameters and characteristics, the power factor and the flicker in particular, has been registered. The paper gives recommendations on the choice of products in the design of lighting systems based on LED lamps.

Publisher

Redakcia Zhurnala Svetotekhnika LLC

Subject

Colloid and Surface Chemistry,Physical and Theoretical Chemistry

Reference20 articles.

1. 1. Beley, V.F., Kharitonov, M.S. Ensuring electromagnetic compatibility in lighting systems based on LED lamps // News of Russian Electrical Engineering Industry, 2018, # 11, pp. 15–21.

2. 2. Zissis, G., Bertoldi, P., Ribeiro Serrenho, T. Update on the Status of LED-Lighting world market since 2018, EUR30500 EN, Publications Office of the European Union, Luxembourg, 2021, ISBN978–92–76–27244–1.

3. 3. IEA, Global lighting sales, historical and in the Net Zero Scenario, 2010–2030, IEA, Paris https://www.iea.org/data-and-statistics/charts/global-lighting-sales-historical-and-in-the-net-zero-scenario‑2010–2030, IEA.

4. 4. GOST (State Standard) 32144–2013. Electric energy. Electromagnetic compatibility of technical equipment. Power quality limits in the public power supply systems // Moscow, Standartinform Publ., 2014, 19 p.

5. 5. Arrillaga, J., Bradley, D.A., Bodger, P.S. Power System Harmonics // Moscow, Energoatomizdat, 1990, 320 p.

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