General Introduction to State Estimation for power networks Measurement inaccuracies and measurement errors are detected and corrected based on the electrical parameters, the power network topology, and the quality of the various measured values. The result is a complete, consistent set of network state variables (P, Q, U, phiU, I, phiI), which serves as the basis for further calculations for network security calculations. State estimation uses the actual process data and the actual base network model. We would like to add this capability to our MSHIP Platform as functional software service. Therefore we would like to conduct a market survey and find out about the opportunities on the market in various dialogue formats. Proceeding for holistic view on your State Estimation (SE) software TransnetBW prepared a questionaire representing our holistic view on requirements of State Estimation (SE) which we would like to map with your realized or planned features. Following topics are covered: Network Elements Topology Measurements Plausibility Tests Observability Analysis Estimation Bad Data Treatment Analysis of Reports Interfaces or API from or to SE Integrations and Software Architecture If you are interested, TransnetBW will share the questionaire. MSHIP - the IT technical Infrastructure as target environment for your State Estimation (SE) software To run and operate the SE software we would provide MSHIP: A Cloud-Native OT/IT secure real-time on-prem, self-hosted, self-run, air gapped enabled platform. Your market offering could assume that all relevant platform software services are available like e.g. Databases, Object Stores etc. including cross-cutting software services like Authentication, Logging, Monitoring, Tracing, Telemetrie etc. Please share with us, if your market offering would support this kind of IT infrastructure technology as runtime environment for SE market offering, or if you have any plans or thoughts to do so, or willing to do so.
General Introduction to State Estimation for power networks Measurement inaccuracies and measurement errors are detected and corrected based on the electrical parameters, the power network topology, and the quality of the various measured values. The result is a complete, consistent set of network state variables (P, Q, U, phiU, I, phiI), which serves as the basis for further calculations for network security calculations. State estimation uses the actual process data and the actual base network model. We would like to add this capability to our MSHIP Platform as functional software service. Therefore we would like to conduct a market survey and find out about the opportunities on the market in various dialogue formats. Proceeding for holistic view on your State Estimation (SE) software TransnetBW prepared a questionaire representing our holistic view on requirements of State Estimation (SE) which we would like to map with your realized or planned features. Following topics are covered: Network Elements Topology Measurements Plausibility Tests Observability Analysis Estimation Bad Data Treatment Analysis of Reports Interfaces or API from or to SE Integrations and Software Architecture If you are interested, TransnetBW will share the questionaire. MSHIP - the IT technical Infrastructure as target environment for your State Estimation (SE) software To run and operate the SE software we would provide MSHIP: A Cloud-Native OT/IT secure real-time on-prem, self-hosted, self-run, air gapped enabled platform. Your market offering could assume that all relevant platform software services are available like e.g. Databases, Object Stores etc. including cross-cutting software services like Authentication, Logging, Monitoring, Tracing, Telemetrie etc. Please share with us, if your market offering would support this kind of IT infrastructure technology as runtime environment for SE market offering, or if you have any plans or thoughts to do so, or willing to do so.