EE power system simulation - analytics and design Overview
- Headquarters
- San Diego, California, United States
- Website
- eepss.net
- Industry
- Desktop Computing Software Products
- Employees
- 6
- NAICS
-
Software Publishers
Keywords
Electrical power system reliability evaluation
Electrical power system design
Power system harmonic frequency scan and THD indices calculations
Power system short circuit calculation
Power system electromagnetic transients
Power flow calculation-snapshot and time series
Electric motor start analysis
Power system Arc flash calculation
Power system cable and transformer sizing
Transient inrush currents for Transformers and capacitor banks
Solar power and battery modeling
DC power system power flow calculations
About EE power system simulation - analytics and design
We aim to empower engineers and professionals with software that not only simplifies complex tasks but also fosters a deeper understanding of electrical power systems. By facilitating insightful analysis and design, we envision a world where energy solutions are not only efficient but also sustainable and resilient. Whether you're an experienced engineer, a research institution, or an industry leader, we invite you to join us in shaping the future of electrical power systems. Explore our range of software solutions, each carefully crafted to meet your specific needs. Our product, EEDrawNet, is a robust electrical power system analytics and design software. It enables you to build visual digital models of electric power systems, small or large, AC and DC, and conduct comprehensive power system analyses. With a digital model, you can effectively examine, investigate, demonstrate, monitor, update, enhance, and upgrade the system. In current version, the software includes 1) Reliability Evaluation based on minimal cutset, 2) Power Flow (or load flow) analysis - snapshot or time series, 3) Motor Starting voltage drop worst case studies, 4) Short Circuit (or Fault) with Arc Flash Calculations, 5) Harmonic Studies - Frequency Scan and THD Indices, 6) Switching Transients Analysis - such as capacitor bank and transformer inrush transient currents, Transient Recovery Voltage (TRV), Fault Transients etc., and 7) Cable/Transformer sizing in ANSI/IEEE and IEC standards.
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