[
    {
        "id": "osp-13305",
        "type": "article-journal",
        "title": "A Quick and Comprehensive Method for Determining Static ATC with NRS and VFT",
        "author": [
            {
                "family": "Eidiani",
                "given": "Mostafa"
            }
        ],
        "URL": "https://omanscience.com/ar/articles/a-quick-and-comprehensive-method-for-determining-static-atc-with-nrs-and-vft",
        "language": "en",
        "issued": {
            "date-parts": [
                [
                    2023
                ]
            ]
        },
        "container-title": "The Journal of Engineering Research",
        "volume": "20",
        "issue": "1",
        "page": "45-51",
        "DOI": "10.53540/tjer.vol20iss2pp45-51",
        "publisher": "Sultan Qaboos University",
        "ISSN": "1726-6009",
        "abstract": "Electricity market players prioritize available transfer capability (ATC) as an attractive solution. Market participants can gain a financial advantage through accurate and fast ATC solutions. In order to provide a suitable and valuable solution, we use differential load flow equations. A dynamic system's entire time-domain trajectory can be solved by this method, along with a fictional time-domain differential equation. This article uses Newton-Raphson-Seydel instead of Newton-Raphson, which can also be used to determine voltage stability. A variable frequency transformer (VFT) was used in this study to increase and control transmission power. A 50% time saving on small systems was achieved with the proposed method, which was applied to seven different systems. In addition, it performed better on large systems by more than 90%. This proposal for static ATC presents promising results and can be applied to online applications."
    }
]