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| Criterion | ![]() Operations Bottleneck Analysis | ![]() Delivery Monte Carlo Forecasting | ![]() Decision Making PERT Estimation | ![]() Engineering Kanban |
|---|---|---|---|---|
Purposedifferent | For a flow that backs up at one point, the method looks for the capacity limit with the greatest leverage. It explains why extra effort elsewhere barely improves throughput. | Helps clarify scope, sequence, and delivery flow in concrete terms. It makes work, boundaries, and order steerable. The result is captured as Forecast Percentiles, Throughput Dataset, and Risk Communication. | On complex initiatives, a plain average tends to understate just how uncertain the outcome really is. It separates options, evaluation criteria, and open risks. The result is captured as a PERT Estimate, Expected Value, and Risk Notes. | When work sits in too many parallel streams, throughput suffers and no one sees the bottlenecks. Kanban makes the flow of work visible and limits overload so a system becomes calmer and more predictable. |
Complexitydifferent | Medium | High | Medium | Medium |
Timedifferent | 1-3 h | 30-90 min Setup, danach laufend | 15-45 min | Ongoing |
Participantsdifferent | 3-8 | 1-8 | 1-8 | 2-12 |
Formatsame | Workshop + async | Workshop + async | Workshop + async | Workshop + async |
Outputdifferent | Bottleneck Map, Flow Metrics, Improvement Options, Follow-up Measures | Forecast Percentiles, Throughput Dataset, Risk Communication | PERT Estimate, Expected Value, Risk Notes | Kanban board, WIP policies, Flow metrics |
Tagsno overlap | FlowMeasurementConstraints | ForecastingFlowDelivery | EstimationUncertaintyRisk | FlowVisual managementDelivery |



