Plataformas de Control Inteligente de Iluminación Interior integrados en Sistemas de Distribución LVDC
Plataformas de Control Inteligente de Iluminación Interior integrados en Sistemas de Distribución LVDC
How to Cite
Download Citation
Show authors biography
Similar Articles
- Wilson Sánchez, Diego Echeverría, Santiago Chamba, Andrés Jacho, Carlos Lozada, Economic Energy Dispatch of the Micro-Grid in the Galapagos Islands Using the Simsee Platform , Revista Técnica "energía": Vol. 21 No. 1 (2024): Revista Técnica "energía", Edición No. 21, ISSUE I
- Wilson Pavón, Sandra Gualotuña, Droop control strategy for an isolated micro grid with distributed generation coupled to improve voltage stability , Revista Técnica "energía": Vol. 20 No. 2 (2024): Revista Técnica "energía", Edición No. 20, ISSUE II
- Diego Paguay, Ricardo Lozada, Ariel Almeida, Carlos Lozada, Implementation of a Phasor Measurement Unit PMU Model in the Real Time Simulation Software for Electromagnetic Transients HYPERSIM , Revista Técnica "energía": Vol. 22 No. 2 (2026): Revista Técnica "energía", Edición No. 22 ISSUE II
- Alex Mullo, José Reinoso, Marlon Chamba, Carlos Lozada, Analysis and Characterization of Power Quality using Data Mining , Revista Técnica "energía": Vol. 22 No. 1 (2025): Revista Técnica "energía", Edición No. 22, ISSUE I
- Dylan Torres, Patricia Gavela, Edison Novoa, Daniela Agila, Impact of the Connection of Concentrated or Dispersed Distributed Generation on Unbalanced Medium- and Low-Voltage Distribution Networks , Revista Técnica "energía": Vol. 22 No. 2 (2026): Revista Técnica "energía", Edición No. 22 ISSUE II
- José Lascano, Paúl Paúl, Design of a Hybrid Solar–Diesel Energy System for the Electrification of Rural Communities Isolated from the National Interconnected Grid in Quisapincha, Ambato , Revista Técnica "energía": Vol. 23 No. 1 (2026): Revista Técnica "energía", Edición No. 23 ISSUE I
- Julio Lascano, Luis Chiza, Roberth Saraguro, Carlos Quinatoa, Jessy Tapia, Demand Estimation for an Electric Vehicles Charging Station Through the Application of Probabilistic Methods , Revista Técnica "energía": Vol. 20 No. 1 (2023): Revista Técnica "energía", Edición No. 20, ISSUE I
- Julio Cardenas, Graciela Colomé, Estefania Tapia, Adaptive Generator Tripping to Improve Transient Stability in Systems with Renewable Generation Integration , Revista Técnica "energía": Vol. 22 No. 2 (2026): Revista Técnica "energía", Edición No. 22 ISSUE II
- Marco Rosero, Morayma Muñoz, Jessenia Ayala, Angela García, Antonio Marcilla, Carla Zambonino, Najhely García, Evaluation of the Energy Storage Capacity of Cocoa Lignocellulosic Material , Revista Técnica "energía": Vol. 21 No. 1 (2024): Revista Técnica "energía", Edición No. 21, ISSUE I
- Jorge Lara, Mauricio Samper, Graciela Colomé, Short-Term Prediction of Smart Metering Systems by Multivariable and Multistep Deep Learning Architectures , Revista Técnica "energía": Vol. 21 No. 1 (2024): Revista Técnica "energía", Edición No. 21, ISSUE I
You may also start an advanced similarity search for this article.
Most read articles by the same author(s)
- A. Ríos, D. Taipe, Manuel Otorongo, J. Guamán, Design and Implementation of a CloudIoT Platform for Intelligent Control of an Interior Lighting System with Supply in LVDC. , Revista Técnica "energía": Vol. 16 No. 1 (2019): Revista Técnica "energía", Edición No. 16
Currently, inefficient use of electricity in homes, businesses, schools and industries requires the implementation of policies, mechanisms and technological innovations of rational use of energy. In this sense, the implementation of new distribution systems, low-voltage direct current, denominated in English terminology Low Voltage Direct Current, LVDC is presented as a technological solution for energy saving and efficiency for end users and energy distribution companies power. The emergence of new distribution systems LVDC has encouraged the development of innovative systems and components for power to low voltage DC, which apply to lighting systems, datacenters and interior spaces.
Existing experiences LVDC distribution systems have shown that reducing energy loss is proportional to increased levels of DC voltage. In addition, conversion systems AC / DC have higher losses than conversion systems DC / DC. Therefore, the implementation of LVDC systems are comparatively more efficient than traditional distribution systems to alternating current. The massive integration of LVDC distribution systems will significantly reduce energy losses and increase the efficiency of energy end users.
In this article, the implementation of a cloud platform control and management of an isolated distribution system that feeds LVDC lighting loads is described. Also, the conceptual development of integration of LVDC system with a renewable generation, which supplies current to the lighting system is presented.
Article visits 1679 | PDF visits 589















