У нас вы можете посмотреть бесплатно How to Build a Generator P–Q Capability Curve in DIgSILENT или скачать в максимальном доступном качестве, видео которое было загружено на ютуб. Для загрузки выберите вариант из формы ниже:
Если кнопки скачивания не
загрузились
НАЖМИТЕ ЗДЕСЬ или обновите страницу
Если возникают проблемы со скачиванием видео, пожалуйста напишите в поддержку по адресу внизу
страницы.
Спасибо за использование сервиса ClipSaver.ru
In this tutorial, we walk step-by-step through building the Generator Capability Curve (P–Q envelope) in DIgSILENT PowerFactory. Understanding and correctly modeling the capability curve is essential for reactive power studies, voltage control, grid code compliance, and accurate power flow and dynamic simulations. You’ll learn how stator current limits, rotor current limits, excitation system constraints, and thermal boundaries define the generator’s reactive power operating region. The video focuses on practical PowerFactory implementation, showing how theoretical generator limits are translated into real simulation parameters. This tutorial is ideal for power system engineers, consultants, students, and researchers performing generator grid compliance studies, G99 assessments, or renewable and conventional generation modeling 🔧 What You’ll Learn: What the generator capability curve represents How to define P–Q limits in DIgSILENT PowerFactory Mapping physical generator limits into simulations Over-excited vs under-excited operation Common modeling mistakes and how to avoid them 📌 Key Topics Covered: Generator P–Q capability envelope Stator and rotor current limits Excitation and thermal constraints Reactive power limits in power flow studies Generator voltage control modeling Grid code-compliant generator behavior 🧠 Engineering Insight A generator capability curve is more than a diagram, it defines safe and realistic operating limits. Incorrect modeling can lead to invalid reactive power results, unrealistic voltage support, or non-compliant studies. Proper implementation ensures simulations reflect actual machine physics and grid code expectations. 📢 Join Our Community: Visit #cmteq website/blog for latest trending technology on power system, electronics and embedded system. https://cmteqpower.com/ 💡 Support the Channel: Help us create more in-depth tutorials and exclusive content by joining our channel membership or supporting us on Patreon. Members get access to perks like specialized tutorials, priority responses to questions, and downloadable resources. 👉 / @cmteq 👉 / membership 🔗 Related Videos: Understanding the Generator Reactive Power Capability Envelope Reactive Power Requirements for Generators – G99 Issue 2 Voltage Control and Reactive Power in Power Systems Generator Modeling in DIgSILENT PowerFactory 📞 Contact Us: Have questions or need further assistance? Leave a comment below or reach out to us on our social media channels. Your feedback and queries are always welcome! #GeneratorCapability #PQCurve #ReactivePower #DigSILENT #PowerFactory #PowerSystems #ElectricalEngineering #GridCode 👇 Support CMTEQ 👇 👍 Like • 🔔 Subscribe SUBSCRIBE:👉 https://www.youtube.com/c/CMTEQ?sub_c... 🎓 Join Channel Membership (exclusive engineering content) 👉 / @cmteq Become a Patreon: ❤️ / membership Donate on Paypal:👉 https://www.paypal.com/donate/?hosted...