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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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239 Item(s) found
As more Distributed Energy Resources (DERs) are added and mixed into the grid, the need to effectively evaluate and validate the dynamic response of power systems has become essential for grid resiliency, reliability, and security. In this webinar, learn how ETAP Transient Stability Analysis addresses needs and challenges of stability studies for power systems with integrated DERs.
This webinar discusses how well ETAP DC Arc Flash method results correlate with the test measured incident energies. The comparisons to be discussed include arc flash tests in photovoltaic and battery/rectifier powered systems. Furthermore, this webinar introduces major improvements to the DC Arc Flash calculation methods in ETAP 20; such as the “Incident Energy Subtraction Method" and new Worst-Case Datablocks from the DC Arc Flash Result Analyzer.
The webinar shows how ePPC leverages an electrical digital twin from design to validation and automation of renewable power plants for maximum yields and stability of the grid.
Learn how to perform Motor Acceleration Studies on any system, regardless of the project stage and available input data; from conceptual design, to FEED, to daily operations. Topics include Impact of Motor Starting, Data Requirements and Motor Parameter Estimation, Dynamic Motor Starting, Motor Acceleration using Transient Stability and Automated Motor Start and Result Analyzer.
Learn how ETAP Transient Stability program and Electromagnetic Transients Program (eMT) are combined in eMTCoSim mode to provide hybrid simulations of Phasor and Transients domains to collectively solve large, complex, and multi-disciplinary system models with higher fidelity.
ETAP 20 Release makes advances in data management, efficiency, flexibility, interoperability, asset modeling, and network analysis applications. In this webinar, learn about some of the significant features and powerful capabilities that are a must have in your power system tool-set.
ETAP's μGrid™ solution combines model-driven microgrid controller hardware with advanced power management software to unlock system resiliency, optimized cost, security, and sustainability. This webinar focuses on microgrid design and software-based validation.
An orchestration of model-driven design, real-time operation, and intelligent controls to achieve fast, proactive decision-making.
This webinar demonstrated how the integration of battery energy storage systems improves system reliability and performance, offers renewable smoothing, and can increase profit margins of renewable farm owners.
ETAP Voltage Stability software helps to accurately identify the system maximum load carrying capacity limits and reactive power compensation requirements. In this webinar, learn how to identify voltage stability limits, simulate the impact of voltage instability, perform sensitivity analysis, calculate & report instability indices and assess results via network views & plots.
This webinar introduces ETAP NetPM™ and demonstrates how this powerful time-saving solution for topology synchronization, data integration, model coordination & validation, and information transfer benefits users across the entire life cycle of the electrical network from modeling to operation and from engineering-consultants to owner-operators.
etap iCE Remote Terminal Unit provides a scalable data acquisition and control RTU with multiple communication options.
etap iCE Gateway collects data from multiple devices and protocols and convert them to a single output protocol.
Fully integrated suite of software products that provides mission critical power management solutions, from modeling to real-time, model-based monitoring and operation.
Cable Sizing & Shock Protection software module offers a powerful tool to save time and improve accuracy for low & high voltage cable calculation and electrical design using the latest French Cable Standard.
This Cable Thermal Analysis webinar explains how to design cable systems to operate to their maximum potential while providing a secure and reliable operation
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Arc flash analysis extends well beyond the scope of IEEE 1584 and NFPA 70E methodology for transmission, distribution, industrial and renewable energy systems. For many years, the industry has been lacking an ‘all-in-one’ solution for performing AC and DC arc flash analysis on LV, MV, and HV systems.
This webinar will provide an overview of the fundamental differences between the IEEE 1584-2018 and existing arc flash methods. To better understand how the 2018 model combines empirical and arc flash physical behavior, the presentation will cover background and insights into the model development validation.
New Standard, New Method, New Learning Curve