統合されたACおよびDCの設計と分析
モデル駆動型SCADA、EMS、PMS、ADMS、SAS
統合デジタルツインプラットフォーム設計、運用、および自動化
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統合された電力系統のモデリング、解析、およびシミュレーションのためのスマートデータセンターソリューションは、データセンターの設計と運用において重要になっています。系統を計画する早い段階で適切な設計上の決定を行うことは、エネルギー効率戦略にとって最も重要であり、合計の所有コストを削減し、エンジニアリングおよび施設の運用の信頼性を向上させます。このウェビナーでは、統合された設計、解析、リアルタイムの予測シミュレーション、およびデータセンターの運用のための ETAP のデジタルツインソリューションを紹介します。
ETAP Digital Twin represents virtual models of a real-world power system under various physical and operational conditions. ETAP offers an integrated Electrical Digital Twin platform enriched with intelligent solutions. ETAP Electrical Digital Twin is built on a multi-dimensional foundation, enabling efficient design, analysis, management, operations, and a complete digital transformation of projects while adapting to evolving system changes.
このウェビナーでは、電力システムの監視、制御、トレーニングシミュレーター、状況インテリジェンス、高度な保護、自動化分析と資産管理、デジタルツイン駆動の自動化と再生可能エネルギー電力管理の新機能とソリューションを紹介します。
ETAP Digital Twin is an integral building block in all stages of an electrical system’s life cycle. Join & learn how you can leverage it for shortened design time, validation & transition of digital twin model to operations, early decision support, identification of operation problems & their cause, accelerated engineer & operator training, asset performance monitoring & optimization.
Today’s power systems depend on renewable energy resources to meet their load demand and are typically interconnected through inverters. This webinar demonstrates how inverter-based resources are modeled for short circuit studies. It will also review various dynamic modeling approaches offered by ETAP and discuss merits and limitations of each approach.
Learn about ETAP's one-stop solution with intelligent interface views and core capabilities to create, configure, customize, and manage the digital twin model of your electrical power system.
The webinar covers the fundamentals & theory of CT saturation, the effects on equipment, and how to avoid CT saturation for certain applications. It includes a demonstration on how to perform CT saturation analysis and CT sizing using ETAP.
Reliable, secure and efficient operation of power systems is becoming increasingly important due to drastic changes in technology and industry structure. Learn how Optimal Power Flow enables you to improve the electrical and financial performance of electric power systems while maintaining system resiliency & security.
Proper sizing and current derating ensures that cables operate to their maximum potential while providing secure and reliable operation. Learn about design and application requirements to properly size and analyze cable systems based on IEEE and North American cable standards and guidelines: IEEE 399, ICEA P-54-440, NEC NFPA 70
ETAP UDM is used to build complex control diagrams for machines & renewable energy systems via a graphical editor and includes solvers for simulating system dynamics. Learn how to use UDM Plot View to compare & analyze these dynamic simulation results from single or multiple cases in a quick & efficient manner.
As a major update to the ETAP 20 series, ETAP 20.6 offers impressive new solutions and features, including 100's of enhancements and time-saving improvements, as well as extensive additions to the equipment libraries.
This webinar introduces ETAP eTraX, integrated solution for design, planning and operation of Rail Traction Systems. eTraX is utilized by railway owners, operators and engineering consultants to analyze, evaluate and monitor innovations and technologies utilized to increase energy efficiency, optimize substation capacity and improve train performance.
This webinar highlights integrated power analysis modules, electrical safety capabilities, and operational compliance solutions, released in ETAP 20.5. Learn about major features & capabilities plus 100’s of enhancements and time-saving improvements added to existing ETAP modules
This webinar provides a summary of the major changes to NFPA 70E 2021 and demonstrates how engineers can use ETAP 20.5 to evaluate the impact of connected and disconnected capacitor energy, calculate arc blast hazard related protection boundaries and how to print Capacitor Hazard Labels in compliance with NFPA 70E 2021.
This webinar examines the microgrid controller’s architecture, hardware deployment workflow, and a range of advanced monitoring tools. Learn how ETAP Digital Twin platform enables the design and deployment of ETAP's Intelligent μGrid™ solution.
Protection assets are critical to the safety and reliability of power systems. Often utilities face the challenge of maintaining and managing protection equipment and rely upon different systems to monitor, manage, and optimize protection settings. ETAP eProtect™ solution provides lifecycle management of protection assets by combining a centralized protection settings management system with automated protection and coordination tools. eProtect allows for device management, relay settings optimization, and management of change across the enterprise.
This webinar presents the criterion and industry guidelines for motor protection in medium and low voltage systems, typical induction motor protection schemes and suggested settings for protective devices. The application of Automated Protection & Coordination evaluation tool for design, verification, and correction of settings are also demonstrated.
Learn how ETAP iDLS offers an intelligent model-driven load curtailment solution with optimization techniques to shed the minimum required distribution feeder loads based on reliability indices, quality of supply, and availability of distributed generation.
This webinar demonstrates EMT simulations of AC power systems connected to power electronic interfaced renewables (both transmission or distribution levels), applications of FACTS devices, and synchronous condensers to mitigate network dynamic response concerns and representation of complex control systems.
ETAP integrates model-driven software and hardware, including intelligent controllers with real-time operational digital twins. This webinar demonstrates how ETAP Digital Substation solution allows you to monitor and verify controller actions and system response during the design, implementation and operation of the controllers.