Power-System Analysis Grounded in Industrial Operating Reality
Electrical studies are most useful when the calculations are connected to how generation, controls, protection and process loads actually operate — not treated as an isolated network exercise. Solvina supports industrial and generation systems with network and dynamic analysis that reflects real plant behaviour.
The engineering problem
behind the question.
A load-flow or short-circuit report that ignores generator dynamics, governor behaviour or protection philosophy can look complete on paper and still miss the interaction that causes a real outage. Studies that stay isolated from how the plant is actually controlled tend to surface their gaps at commissioning — the most expensive place to find them.
What we study
The scope is shaped around the engineering question, system boundary and operating conditions relevant to the study.
Load flow
Short-circuit analysis
Transient and dynamic stability
Generator and controller modelling
Contingency analysis
Industrial and captive-grid behaviour
Interfaces with protection and control systems
From engineering question to evidence.
Scope is defined for the specific engineering question — we do not include analysis types that aren't relevant to your system just to lengthen the report. Models are built or reviewed, contingencies and scenarios of interest are analysed, and findings are translated into settings, design changes or evidence a customer or authority can act on.
What this work
gives you.
Confidence the network will perform as designed under contingency
Fewer surprises at commissioning or grid-connection testing
A defensible technical basis for protection and control settings
Clear input for capacity planning and expansion decisions
Questions we
often hear.
No — scope is defined for the engineering question at hand. We are direct about which analyses are relevant to your system and which are not.
Yes — where required, they feed directly into grid code compliance and generator testing work.