Power-flow and voltage compliance report
Power-flow simulation outputs single-point results only: there is no standardised grid-connection power-flow assessment and no N-1 case or limit-violation summary.
Wiring check (verbatim, from the engine source)Wired (specification switch name matches the engine)
PriorityP0
Switch named by the specificationstudyOptions.enableTopologyValidation
Wired verbatim in the engine?yes(3 evidence)
Engine switches that actually produce this reportenableTopologyValidation
Report chapters these switches can appendtopology-check
Built-in chapter list (from the specification)The specification asks for 8 chapter(s); the engine can produce 1 of them for this report.
Standards basisGB/T 12325; IEC 60038; IEEE 1547; national DER grid-connection voltage-deviation codes.
The specification switch `studyOptions.enableTopologyValidation` is wired verbatim: `engines/topology-check.js` resolves it and the result gates the `topology-check` chapter.
evidence · file:line
Wiring check (verbatim, from the engine source) · evidence
- [Wired verbatim in the engine?] engines/topology-check.js:92 · const SWITCH_MAIN = 'enableTopologyValidation';
- [Wired verbatim in the engine?] engines/topology-check.js:173 · + 'layout{deferred:true},notes,basisKey} + 打标 flags。开关 studyOptions.enableTopologyValidation(缺省 false → 零残留)。'
- [Wired verbatim in the engine?] design.js:1196 · * 开关 studyOptions.enableTopologyValidation(缺省 false → 本块一行不执行,产物零残留)。 */
- enableTopologyValidation
- engines/topology-check.js:92 · const SWITCH_MAIN = 'enableTopologyValidation';
- engines/topology-check.js:173 · + 'layout{deferred:true},notes,basisKey} + 打标 flags。开关 studyOptions.enableTopologyValidation(缺省 false → 零残留)。'
- design.js:1196 · * 开关 studyOptions.enableTopologyValidation(缺省 false → 本块一行不执行,产物零残留)。 */
Built-in chapter list (from the specification)8 chapter(s)
- 1.Report overview: project information, simulated cases (normal, N-1, maximum output, minimum output), standards applied, model assumptions.
- 2.Network and load / DER overview: single-line diagram, equipment list, load and distributed-generation parameters.
- 3.Steady-state power-flow result tables: bus voltages, branch active / reactive power, power factor, network losses.
- 4.N-1 contingency verification: voltage and branch-overload checks after an element is disconnected.
- 5.Limit-violation alarm summary: voltage over / under limit, branch current overload, with risk grading.
- 6.Reactive-power analysis: reactive demand, power-factor check, compensation-capacity assessment.
- 7.Compliance conclusions and engineering recommendations: remedial measures (added compensation, transformer tap adjustment, DER output curtailment).
- 8.Appendix: element parameters, simulation case settings, limit-value tables.
Chapters produced by the engine for this scheme0 / 1
This report has not been run for the current scheme yet.
Nothing is invented: run it, or enable the switches on the relevant tool pages, and the produced chapters appear here.
Conclusions produced for this report0
No conclusion of this report was produced (the report has not been run, or it produced none).
Charts
Required by the specification
- Bus-voltage distribution bar chart
- Branch-power distribution chart
- N-1 limit-violation summary chart
Produced by the engine (report-charts study)
This report has not been run for the current scheme yet.
Explicitly out of scope (from the specification)3
- · Quasi-steady-state algebraic power flow; no transient voltage dynamics.
- · No parameter drift caused by long-term thermal ageing of equipment.
- · No automatic generation of a refurbishment work plan — compliance verdict only.
Sends one design request with exactly the switches below enabled. Nothing is calculated when the page opens.