An Energy-Saving Concept of the Smart Building Power Grid with Separated Lines for Standby Devices

<p>Standby power takes 5-10 % of the residential electricity around the world. Some countries lose more than 14 % of the total electricity used in the residential sector. Hence, a new energysaving concept that could help to decrease the power losses is discussed in this paper. Firstly, the two...

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Main Author: Dmytro Zubov
Format: Article
Language:English
Published: EduSoft publishing 2016-09-01
Series:Brain: Broad Research in Artificial Intelligence and Neuroscience
Subjects:
Online Access:http://www.edusoft.ro/brain/index.php/brain/article/view/633
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spelling doaj-c217c33f537a4a9dbf661ff7ff6a191f2020-11-24T20:52:39ZengEduSoft publishingBrain: Broad Research in Artificial Intelligence and Neuroscience2068-04732067-39572016-09-0173148156476An Energy-Saving Concept of the Smart Building Power Grid with Separated Lines for Standby DevicesDmytro Zubov0Universidad Politécnica de San Luis Potosí<p>Standby power takes 5-10 % of the residential electricity around the world. Some countries lose more than 14 % of the total electricity used in the residential sector. Hence, a new energysaving concept that could help to decrease the power losses is discussed in this paper. Firstly, the two power lines of infrastructure for continuously connected equipment and for standby devices is proposed for new smart buildings. Secondly, the segmented infrastructure with unified hardware<br />units is proposed for existing smart buildings (the new one can apply this principle as well). The contactors (i.e. unified hardware units) consist of the NodeMcu Lua ESP8266 WiFi IoT<br />development board, ACS712T ELC-30A current sensor, and the Songle relay. The automatic mode is based on three steps: measurement of the current using ACS712T ELC-30A sensor in all segments except the root; switching off the relays with the current less than or equal to any number in the historical data; switching off the root contactor if all the descendent relays (i.e. contactors) are switched off. Second step represents the linear classification with sliding window in machine learning. The software consists of two parts, low-level Arduino sketches and high-level C# Windows form app. They are connected by MQTT broker Mosquitto. The proposed concept was successfully tested using a prototype with three segments, one of which includes smart lighting. The payback period is of approximately one month and a half for the whole-building switch concept.</p>http://www.edusoft.ro/brain/index.php/brain/article/view/633Smart power grid, energy-saving, standby power, IoT, MQTT
collection DOAJ
language English
format Article
sources DOAJ
author Dmytro Zubov
spellingShingle Dmytro Zubov
An Energy-Saving Concept of the Smart Building Power Grid with Separated Lines for Standby Devices
Brain: Broad Research in Artificial Intelligence and Neuroscience
Smart power grid, energy-saving, standby power, IoT, MQTT
author_facet Dmytro Zubov
author_sort Dmytro Zubov
title An Energy-Saving Concept of the Smart Building Power Grid with Separated Lines for Standby Devices
title_short An Energy-Saving Concept of the Smart Building Power Grid with Separated Lines for Standby Devices
title_full An Energy-Saving Concept of the Smart Building Power Grid with Separated Lines for Standby Devices
title_fullStr An Energy-Saving Concept of the Smart Building Power Grid with Separated Lines for Standby Devices
title_full_unstemmed An Energy-Saving Concept of the Smart Building Power Grid with Separated Lines for Standby Devices
title_sort energy-saving concept of the smart building power grid with separated lines for standby devices
publisher EduSoft publishing
series Brain: Broad Research in Artificial Intelligence and Neuroscience
issn 2068-0473
2067-3957
publishDate 2016-09-01
description <p>Standby power takes 5-10 % of the residential electricity around the world. Some countries lose more than 14 % of the total electricity used in the residential sector. Hence, a new energysaving concept that could help to decrease the power losses is discussed in this paper. Firstly, the two power lines of infrastructure for continuously connected equipment and for standby devices is proposed for new smart buildings. Secondly, the segmented infrastructure with unified hardware<br />units is proposed for existing smart buildings (the new one can apply this principle as well). The contactors (i.e. unified hardware units) consist of the NodeMcu Lua ESP8266 WiFi IoT<br />development board, ACS712T ELC-30A current sensor, and the Songle relay. The automatic mode is based on three steps: measurement of the current using ACS712T ELC-30A sensor in all segments except the root; switching off the relays with the current less than or equal to any number in the historical data; switching off the root contactor if all the descendent relays (i.e. contactors) are switched off. Second step represents the linear classification with sliding window in machine learning. The software consists of two parts, low-level Arduino sketches and high-level C# Windows form app. They are connected by MQTT broker Mosquitto. The proposed concept was successfully tested using a prototype with three segments, one of which includes smart lighting. The payback period is of approximately one month and a half for the whole-building switch concept.</p>
topic Smart power grid, energy-saving, standby power, IoT, MQTT
url http://www.edusoft.ro/brain/index.php/brain/article/view/633
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