About the job
I am seeking an experienced DIgSILENT PowerFactory engineer to build steady-state transmission network models of Australia's NEM and WEM (SWIS) power systems from publicly available data (AEMO ISP inputs, TNSP planning reports, GIS layers), validated and tuned against published fault levels and interconnector limits. The end deliverable is an automated, Python-scripted connection headroom assessment that reports MW hosting capacity at each transmission bus against thermal, voltage, and fault-level constraints under system-normal and N-1 conditions. Prior Australian network experience strongly preferred. Full scope of work and data sources attached, please quote a fixed price and estimated duration.
I am seeking an experienced DIgSILENT PowerFactory engineer to build steady-state transmission network models of Australia's NEM and WEM (SWIS) power systems from publicly available data (AEMO ISP inputs, TNSP planning reports, GIS layers), validated and tuned against published fault levels and interconnector limits. The end deliverable is an automated, Python-scripted connection headroom assessment that reports MW hosting capacity at each transmission bus against thermal, voltage, and fault-level constraints under system-normal and N-1 conditions. Prior Australian network experience strongly preferred. Full scope of work and data sources attached, please quote a fixed price and estimated duration.
I am seeking an experienced DIgSILENT PowerFactory engineer to build steady-state transmission network models of Australia's NEM and WEM (SWIS) power systems from publicly available data (AEMO ISP inputs, TNSP planning reports, GIS layers), validated and tuned against published fault levels and interconnector limits. The end deliverable is an automated, Python-scripted connection headroom assessme...
read more
I am seeking an experienced DIgSILENT PowerFactory engineer to build steady-state transmission network models of Australia's NEM and WEM (SWIS) power systems from publicly available data (AEMO ISP inputs, TNSP planning reports, GIS layers), validated and tuned against published fault levels and interconnector limits. The end deliverable is an automated, Python-scripted connection headroom assessment that reports MW hosting capacity at each transmission bus against thermal, voltage, and fault-level constraints under system-normal and N-1 conditions. Prior Australian network experience strongly preferred. Full scope of work and data sources attached, please quote a fixed price and estimated duration.
read less