[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"$f1gc4nipw44xg9":3,"$fj7txrrgn5h0v":36,"$f1wgehhkgojxn9":62},{"data":4,"success":35},{"menu":5},{"menuItems":6},{"nodes":7},[8,14,19,24,29],{"id":9,"label":10,"url":11,"path":11,"target":12,"parentId":12,"cssClasses":13},"cG9zdDoyMTY1","Products","\u002Fproducts",null,[],{"id":15,"label":16,"url":17,"path":17,"target":12,"parentId":12,"cssClasses":18},"cG9zdDoyNDQw","Technology","\u002Ftechnology",[],{"id":20,"label":21,"url":22,"path":22,"target":12,"parentId":12,"cssClasses":23},"cG9zdDoyMTY3","News","\u002Fnews",[],{"id":25,"label":26,"url":27,"path":27,"target":12,"parentId":12,"cssClasses":28},"cG9zdDoyMTY2","About","\u002Fabout",[],{"id":30,"label":31,"url":32,"path":32,"target":12,"parentId":12,"cssClasses":33},"cG9zdDoyMTYz","Contact us","\u002Fcontact",[34],"link-contact",true,{"contact":37,"success":35},{"address":38,"email":39,"phone":40,"contactPersonsTitle":41,"contactPersonsRepeater":42},"Dynelectro A\u002FS\nSyvvejen 10\n4130 Viby Sjælland\nDenmark","info@dynelectro.dk","+45 23 45 47 55","",[43,53],{"name":44,"category":45,"jobtitle":46,"phone":47,"email":41,"description":48,"image":49},"Kristian Laursen","Project Enquiries","Commercial & Business Development Manager","+45 29 66 08 27","\"Every hydrogen project is unique. Let's discuss your process, integration opportunities and commercial objectives to identify the right SOEC solution.\"",{"url":50,"width":51,"height":52,"alt":41},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2026\u002F08\u002Fkristian.png",839,1170,{"name":54,"category":55,"jobtitle":56,"phone":40,"email":41,"description":57,"image":58},"Sune Lilbæk","Corporate & Investor Relations","Chief Executive Officer","\"Interested in Dynelectro's strategy, corporate partnerships or investment opportunities? I'd be pleased to discuss how we're scaling industrial SOEC technology.\"",{"url":59,"width":60,"height":61,"alt":41},"https:\u002F\u002Fhydrogen.on-forge.com\u002Fwp-content\u002Fuploads\u002F2026\u002F08\u002Fb295543318b64909a874eb34db4a3da8.png",200,300,{"currentProject":63,"allProjects":82,"success":35},{"title":64,"acf":66,"yoast_head_json":72},{"rendered":65},"ARCME",{"project_summary":67,"project_info":67,"project_flexible":68},"\u003Cp>Advanced real-time condition monitoring for enhanced reliability in electrolyser operation\u003C\u002Fp>\n",[69],{"acf_fc_layout":70,"text":71},"text","\u003Cp>This project aims to address the critical gap in real-time condition monitoring (RT-CM) of solid oxide electrolyser (SOE) for green hydrogen production. The key challenge lies in developing RT-CM tools for fast and accurate real-time assessment of the state of health for SOE systems.\u003C\u002Fp>\n\u003Cp>The ARCME consortium will tackle this barrier by developing novel RT-CM tools based on the dynamic current-voltage responses generated by Dynelectro’s patented AC:DC operation method that is expected to significantly extend life span.\u003C\u002Fp>\n\u003Cp>The RT-CM tools is expected to significantly reduce operational costs by enabling predictive maintenance thereby improving efficiency and enhancing system reliability for SOE systems.\u003C\u002Fp>\n\u003Cp>The project will achieve this by\u003C\u002Fp>\n\u003Col>\n\u003Cli>Collecting condition measurement data under advanced AC:DC operation and various operating parameters including high-pressure environment\u003C\u002Fli>\n\u003Cli>Conducting dynamic multi physics modeling to analyze how the investigated operations influence cell and stack impedances\u003C\u002Fli>\n\u003Cli>Developing RT-CM tools based on impedance analysis, equivalent circuit models and measurement data;\u003C\u002Fli>\n\u003Cli>Implementation and demonstrating the tools on SOE cell and 5 kW stack systems. Notably, the novel RT-CM tools can be used on existing SOE technology with AC:DC operations, which enables rapid implementation and scaling towards large PtX systems for clean fuel production.\u003C\u002Fli>\n\u003C\u002Fol>\n",{"title":73,"robots":74,"og_type":77,"og_title":73,"og_description":78,"og_url":79,"og_site_name":80,"article_published_time":41,"article_modified_time":81,"twitter_title":41,"twitter_description":41,"canonical":79},"ARCME - Dynelectro",{"index":75,"follow":76},"index","follow","article","Advanced real-time condition monitoring for enhanced reliability in electrolyser operation","https:\u002F\u002Fhydrogen.on-forge.com\u002Fproject\u002Farcme\u002F","Dynelectro","2026-08-10T07:58:09+00:00",[83,88,93,98,102,107,112,117,122,127],{"id":84,"title":85,"slug":86,"project_teaser_description":87},1734,"Shell GameChanger – 0.04 MW DEU","gamechanger","Developing and validating a 40 kW Dynamic Electrolyser Unit.",{"id":89,"title":90,"slug":91,"project_teaser_description":92},1502,"HySPRINT","hysprint","Scaling next-generation SOEC cell manufacturing.",{"id":94,"title":95,"slug":96,"project_teaser_description":97},1503,"ViPES2X","vipes2x","Integrating electrolysers into an AI-driven Virtual Power Plant.",{"id":99,"title":65,"slug":100,"project_teaser_description":101},1484,"arcme","Developing real-time health monitoring for SOEC systems.",{"id":103,"title":104,"slug":105,"project_teaser_description":106},1497,"Dyn­Ammonia","dynammonia","Developing the core technology for MW-scale SOEC",{"id":108,"title":109,"slug":110,"project_teaser_description":111},1505,"DynEl","dynel","Validating AC:DC operation for dynamic SOEC systems.",{"id":113,"title":114,"slug":115,"project_teaser_description":116},1506,"DynFlex","dynflex","Developing digital tools for flexible PtX operation.",{"id":118,"title":119,"slug":120,"project_teaser_description":121},1499,"DynH2","dynh2","Developing scalable manufacturing of SOEC cells.",{"id":123,"title":124,"slug":125,"project_teaser_description":126},1504,"Dynelectro Core Technology – AC:DC","acdc","Developing Dynelectro's patented AC:DC operation technology.",{"id":128,"title":129,"slug":130,"project_teaser_description":131},1500,"Heat Seeker","heat-seeker","Reducing SOEC system complexity through AC:DC."]