{"id":21324,"date":"2023-02-10T12:40:00","date_gmt":"2023-02-10T12:40:00","guid":{"rendered":"https:\/\/cit.upc.edu\/?post_type=portfolio&#038;p=21324"},"modified":"2023-07-26T07:46:48","modified_gmt":"2023-07-26T07:46:48","slug":"a-charge-estimator-to-optimise-the-performance-of-lithium-ion-batteries","status":"publish","type":"portfolio","link":"https:\/\/cit.upc.edu\/en\/portfolio-item\/a-charge-estimator-to-optimise-the-performance-of-lithium-ion-batteries\/","title":{"rendered":"A charge estimator to optimise the performance of lithium-ion batteries"},"content":{"rendered":"\n<p class=\"wp-block-paragraph\">10\/02\/2023<br>Project Header<br>right<br>no-repeat;left top;;<br>auto<br>20px<br><br>The aim of the GENIUS project, in which the Centre for Technological Innovation in Static Converters and Drives (CITCEA) of the Universitat Polit\u00e8cnica de Catalunya &#8211; BarcelonaTech (UPC) participates, is to develop a charge estimator for lithium-ion batteries based on a dynamic model parameterised by a neural network.\r<br>The advantages of basing the estimator on this technology include the capacity of adaptation to the ageing of the battery cell due to use. This adaptation is the result of unsupervised learning capabilities, which enable the parameters of the model to be adapted automatically and optimise the battery level and health during the life cycle of the element.<br>Project Header<br>no-repeat;left top;;<br>auto<br>20px<br><br><br><h4>Results and impact<\/h4>\r<br>The result of this project has a high potential impact on all devices that require a precise indicator of the charge level, especially in applications in which the device\u2019s battery block has to support varying charges, such as in the mobility sector.\r<br>Regarding the area of knowledge of techniques to estimate the level of battery charge, methods have been developed based on the digitalisation of the electrical behaviour of the batteries. Based on these methods, the energy stored and the operating limits of the batteries due to malfunctioning or ageing can be predicted. These techniques have been implemented in laboratory demonstrators and in real environments such as distribution and rural networks.\r<br>The proposal has a degree of interuniversity collaboration, with projects such as Formula Student. However, the nature of the project enables this collaboration to be extended to more companies, especially in the mobility sector.<br>Main Text<br>no-repeat;left top;;<br>auto<br><br><h4>Budget and funding<\/h4>\r<br>GENIUS has a very high level of interdisciplinarity, as it is focused both on the design of a neural network and on work with types of cell chemistry and implementation of the system. It has a budget of \u20ac 489,780 and is in the execution phase. It is expected that the project will be completed in December 2024. The project consortium is comprised of CITCEA-UPC, NVISION and IREC.<br>hide<br><br><img decoding=\"async\" src=\"https:\/\/cit.upc.edu\/wp-content\/uploads\/2023\/02\/car-engine-231213_960_720-1.jpg\" alt=\"car-engine-231213_960_720\" \/><br>full<br>center<br><br><br><h5>Technology<\/h5>\r<br>Energy and Environment<br>Tecnolog\u00eda<br>no-repeat;left top;;<br>auto<br>0px<br><br>25<br><br><h5>Sector<\/h5>\r<br><a target=\"_blank\" target=\"_blank\" href=\"\/en\/energy\/\">Energy<\/a><br>Sector<br>no-repeat;left top;;<br>auto<br>0px<br><br>25<br><br>40<br><br><h5>You want to know more?<\/h5><br>Contact Button<br>no-repeat;left top;;<br>auto<br>0px<br><br><hr class=\"no_line\" style=\"margin: 0 auto 0px auto\"\/>\n\r<br><a class=\"button  button_size_2\" href=\"\"         title=\"\"><span class=\"button_label\">Button<\/span><\/a>\n\r<br>\r<br><hr class=\"no_line\" style=\"margin: 0 auto 0px auto\"\/>\n\r<br><a class=\"button  button_size_2\" href=\"\"         title=\"\"><span class=\"button_label\">Button<\/span><\/a>\n<br>no-repeat;left top;;<br>auto<br><br>50<br><br><h4>Related Projects<\/h4><br>Proyectos Relacionados<br>no-repeat;left top;;<br>auto<br><br>4<br>grid<br>4<br>tecnologias-de-la-energia-y-del-medio-ambiente-en<br>date<br>DESC<br>21324<br><br><\/p>\n","protected":false},"excerpt":{"rendered":"<p>The aim of the GENIUS project, in which the Centre for Technological Innovation in Static Converters and Drives (CITCEA) of the Universitat Polit\u00e8cnica de Catalunya &#8211; BarcelonaTech (UPC) participates, is to develop a charge estimator for lithium-ion batteries based on a dynamic model parameterised by a neural network.<\/p>\n","protected":false},"author":5,"featured_media":21319,"menu_order":0,"comment_status":"open","ping_status":"closed","template":"","meta":[],"portfolio-types":[382,947,927,391,189],"class_list":["post-21324","portfolio","type-portfolio","status-publish","has-post-thumbnail","hentry","portfolio-types-automocion-en","portfolio-types-automocion-2-en","portfolio-types-mobile-en","portfolio-types-energia-en","portfolio-types-tecnologias-de-la-energia-y-del-medio-ambiente-en"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.8 - 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