ElecSimHub

Distribution N-1 and fault restoration / network reconfiguration report

Only preset switch combinations can be checked; there is no automatic post-fault restoration scheme and no complete loss-of-load statistics report.

Wired, not run yetP4All reportsComputing…
Wiring check (verbatim, from the engine source)Wired under a different switch name (specification name is NOT wired)
PriorityP4
Switch named by the specificationstudyOptions.enableSwitchOptimize
Wired verbatim in the engine?no(0 evidence)
Engine switches that actually produce this reportenableN1Transfer · enableBusTransfer
Report chapters these switches can appendn1-transfer · bus-transfer
Built-in chapter list (from the specification)The specification asks for 8 chapter(s); the engine can produce 2 of them for this report.
Standards basisDistribution-network safe-operation guidelines; urban distribution N-1 security criterion; network-reconfiguration engineering practice.
⚠ The specification switch `studyOptions.enableSwitchOptimize` is NOT wired. N-1 and post-fault transfer are implemented under `enableN1Transfer` (`engines/n1-transfer.js`, chapter `n1-transfer`) and `enableBusTransfer` (chapter `bus-transfer`).
Switch named by the specification ≈ enableSwitchOptimize · Wired under a different switch name (specification name is NOT wired)

evidence · file:line

Wiring check (verbatim, from the engine source) · evidence
  • enableN1Transfer
    • engines/n1-transfer.js:78 · const SWITCH_MAIN = 'enableN1Transfer';
    • engines/n1-transfer.js:80 · 'enableN1Transfer', // 主名(任务书字面)
    • engines/n1-transfer.js:62 · * 开关:`studyOptions.enableN1Transfer`(**主名,缺省 false → 产物零残留**)。
  • enableBusTransfer
    • engines/bus-transfer.js:83 · const SWITCH_MAIN = 'enableBusTransfer';
    • engines/bus-transfer.js:138 · + '冲击分项与耐受来源、备用电源主通道与额定来源、投切方式时间口径与来源、打标项)。开关 studyOptions.enableBusTransfer(缺省 false → 零残留)。',
    • engines/bus-transfer.js:85 · 'enableBusTransfer', // 主名(任务书字面)
Built-in chapter list (from the specification)8 chapter(s)
  1. 1.Report overview: distribution topology, fault-scenario list, switch list, N-1 criterion description, model assumptions.
  2. 2.Network base data: feeders, sectionalising switches, tie switches, load distribution.
  3. 3.Fault scenario summary: N-1 fault location for each branch.
  4. 4.Fault reconfiguration scheme: recommended switch open / close operation list.
  5. 5.Post-restoration power-flow verification: bus voltage and branch-overload checks after restoration.
  6. 6.Loss-of-load statistics: interrupted load capacity and affected load list for each fault scenario.
  7. 7.Supply-reliability conclusions, weak-feeder identification, network-upgrade recommendations.
  8. 8.Appendix: switch parameters, fault cases, constraints.
Chapters produced by the engine for this scheme0 / 2

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
  • Fault-location single-line diagram
  • Before / after restoration load comparison bar chart
  • Loss-of-load summary table
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)4
  • · Quasi-steady-state model; no switching sequence, mechanical life or operating cost.
  • · No coupled protection time-sequence simulation or protection interlocking.
  • · No switch failure-to-operate or spurious operation.
  • · Static scheme assessment only; it is not a substitute for distribution-automation logic validation.

Sends one design request with exactly the switches below enabled. Nothing is calculated when the page opens.