Optimizer
Tests every campaign strategy and barrier technology with your current parameters, picks the lowest total cost, and shows what drives it.
Custom optimization
Choose what to optimize for, set limits, and decide how strictly they apply.
1 · Objective
2 · Constraints and penalties
3 · Ranked options
Optimal option: Fixed offshore hub · 4 PSVs
| Option | Total cost | Stockout hours | Service level | Emissions | Penalty | Score | |
|---|---|---|---|---|---|---|---|
| Fixed offshore hub · 4 PSVs | $15.6M | 9 h | 86 % | 6,740 t CO₂ | — | 0.00 | |
| Moving hub · 4 PSVs | $16.6M | 22 h | 85 % | 6,848 t CO₂ | — | 0.00 | |
| Moving hub · 6 PSVs | $20.1M | 0 h | 86 % | 7,294 t CO₂ | — | 0.01 | |
| Fixed offshore hub · 6 PSVs | $20.5M | 5 h | 85 % | 7,242 t CO₂ | — | 0.01 | |
| Moving hub · 5 PSVs | $24.3M | 89 h | 86 % | 7,305 t CO₂ | — | 0.01 | |
| Fixed offshore hub · 5 PSVs | $24.3M | 90 h | 85 % | 7,169 t CO₂ | — | 0.01 | |
| Fixed offshore hub · 7 PSVs | $29.7M | 94 h | 83 % | 7,190 t CO₂ | — | 0.02 | |
| Direct shore runs · 6 PSVs | $32.7M | 207 h | 84 % | 8,958 t CO₂ | — | 0.03 | |
| Moving hub · 7 PSVs | $32.9M | 137 h | 85 % | 7,265 t CO₂ | — | 0.03 | |
| Direct shore runs · 7 PSVs | $38.5M | 251 h | 81 % | 9,234 t CO₂ | — | 0.03 | |
| Direct shore runs · 5 PSVs | $51.7M | 497 h | 84 % | 8,225 t CO₂ | — | 0.05 | |
| Moving hub · 3 PSVs | $150.3M | 1,842 h | 88 % | 5,436 t CO₂ | — | 0.20 | |
| Fixed offshore hub · 3 PSVs | $162.3M | 2,003 h | 92 % | 5,312 t CO₂ | — | 0.22 | |
| Direct shore runs · 4 PSVs | $270.9M | 3,457 h | 95 % | 6,834 t CO₂ | — | 0.38 | |
| Direct shore runs · 3 PSVs | $693.4M | 9,129 h | 96 % | 4,983 t CO₂ | — | 1.00 |
Score 0 is best on every weighted result; 1 is worst. Penalties are added to total cost before scoring.
Cost matrix · Supply architecture vs PSV fleet size
| Strategy \ PSVs | 3 PSVs | 4 PSVs | 5 PSVs | 6 PSVs | 7 PSVs |
|---|---|---|---|---|---|
| Case 1 — Direct shore runs | |||||
| Case 2 — Fixed offshore hub | |||||
| Case 3 — Moving hub |
Click any cell to open that setup in the Dashboard.
What the matrix says
Cheapest setup: Case 2 — Fixed offshore hub · 4 PSVs — $15.6M.
Saves vs direct shore runs with 6 PSVs: $17.0M.
Total cost = vessel charter + fuel + deferred production from platform stockouts. Too few PSVs causes stockouts; too many adds charter cost.