Ramprabu J, Dharan Babu E, Rithika J C, Thavamuthu P S
{"title":"Energy Management System based on Interleaved Landsman Converter using Hybrid Energy Sources","authors":"Ramprabu J, Dharan Babu E, Rithika J C, Thavamuthu P S","doi":"10.1109/ICEARS56392.2023.10085115","DOIUrl":null,"url":null,"abstract":"To suggest a hybrid AC/DC source that would eliminate the need for numerous dc-ac-dc or ac-dc-ac conversions in a single ac or dc grid. In the modern era, the population of people is more. Employment has increased. The number of industries and factories set up in India has increased in recent days. Also, there is lots of work to be done and therefore the need for energy consumption is being increased. In upcoming days, the electricity production in India might be privatized. Cost of production may increase. Hence, there might be a chance of demand in production. The occurrence of power cuts has increased due to this. In order to correct this issue, if moved to renewable energy resources, it will be a better solution to manage and use power in a more efficient way. A hybrid renewable energy source combines one or more renewable energy sources, such solar and wind, to increase system efficiency and improve energy supply reliability to some extent. The interleaved landsman converter will produce steady output voltage and current for the load from the sources linked to it. In the simulation test, the interleaved landsman converter stabilizes the renewable resource energy; if the primary hybrid source fails, the secondary battery source, which is charged by the solar panel, negates it. Wind and solar energy are combined and used as hybrid energy sources. The proposed model is implemented in MATLAB simulation.","PeriodicalId":338611,"journal":{"name":"2023 Second International Conference on Electronics and Renewable Systems (ICEARS)","volume":"46 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-03-02","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2023 Second International Conference on Electronics and Renewable Systems (ICEARS)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ICEARS56392.2023.10085115","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 2
Abstract
To suggest a hybrid AC/DC source that would eliminate the need for numerous dc-ac-dc or ac-dc-ac conversions in a single ac or dc grid. In the modern era, the population of people is more. Employment has increased. The number of industries and factories set up in India has increased in recent days. Also, there is lots of work to be done and therefore the need for energy consumption is being increased. In upcoming days, the electricity production in India might be privatized. Cost of production may increase. Hence, there might be a chance of demand in production. The occurrence of power cuts has increased due to this. In order to correct this issue, if moved to renewable energy resources, it will be a better solution to manage and use power in a more efficient way. A hybrid renewable energy source combines one or more renewable energy sources, such solar and wind, to increase system efficiency and improve energy supply reliability to some extent. The interleaved landsman converter will produce steady output voltage and current for the load from the sources linked to it. In the simulation test, the interleaved landsman converter stabilizes the renewable resource energy; if the primary hybrid source fails, the secondary battery source, which is charged by the solar panel, negates it. Wind and solar energy are combined and used as hybrid energy sources. The proposed model is implemented in MATLAB simulation.
建议采用混合AC/DC电源,以消除在单个交流或直流电网中进行大量DC - AC - DC或AC - DC - AC转换的需要。在现代,人口越来越多。就业增加。最近几天,在印度设立的工业和工厂数量有所增加。此外,还有很多工作要做,因此对能源消耗的需求正在增加。在未来的日子里,印度的电力生产可能会私有化。生产成本可能会增加。因此,生产中可能会有需求。因此,停电事件也随之增加。为了纠正这个问题,如果转移到可再生能源,它将是一个更好的解决方案,以更有效的方式管理和使用电力。混合可再生能源将太阳能、风能等一种或多种可再生能源组合在一起,在一定程度上提高系统效率,提高能源供应的可靠性。交错的landsman变换器将产生稳定的输出电压和电流从连接到它的源负载。在仿真试验中,交错式陆人变换器稳定了可再生能源;如果主混合电源发生故障,由太阳能电池板充电的二次电池电源就会使其失效。风能和太阳能被结合起来作为混合能源使用。在MATLAB仿真中实现了该模型。