PROMETHEE Evaluator

SkillDev tools

PROMETHEE (Preference Ranking Organization Method for Enrichment Evaluation) skill for outranking-based multi-criteria analysis

Instructions available. Your AI can read the instructions. Execution depends on the setup they require.

Add ahel to your AI once: Claude, ChatGPT, Cursor, Claude Code or Codex. Then ask it to use this.

Then ask your AI: use the PROMETHEE Evaluator skill

What this skill tells your AI

The instructions your AI receives, as published by a5c-ai/babysitter in library/specializations/domains/business/decision-intelligence/skills/promethee-evaluator/SKILL.md and read by ahel’s review.

Overview

The PROMETHEE Evaluator skill implements the Preference Ranking Organization Method for Enrichment Evaluation methodology for multi-criteria decision analysis. It uses outranking relations based on pairwise comparisons of alternatives, allowing for flexible preference modeling through various preference functions.

Capabilities

  • Preference function selection (Usual, U-shape, V-shape, Level, Linear, Gaussian)
  • Unicriterion preference degree calculation
  • Multicriteria preference index computation
  • PROMETHEE I partial ranking
  • PROMETHEE II complete ranking
  • GAIA plane visualization
  • Walking weights sensitivity analysis
  • Net flow calculation

Used By Processes

  • Multi-Criteria Decision Analysis (MCDA)
  • Vendor Selection Analysis
  • Resource Allocation Decisions

Usage

Preference Functions

  1. Usual (Type I): Binary preference (1 if better, 0 otherwise)
  2. U-shape (Type II): Indifference threshold q
  3. V-shape (Type III): Linear with preference threshold p
  4. Level (Type IV): Combination of q and p thresholds
  5. Linear (Type V): Linear between q and p thresholds
  6. Gaussian (Type VI): Normal distribution with sigma parameter

Configuration Example

# Define PROMETHEE configuration
config = {
    "alternatives": ["Alt A", "Alt B", "Alt C", "Alt D"],
    "criteria": [
        {
            "name": "Cost",
            "weight": 0.3,
            "type": "cost",
            "preference_function": "linear",
            "parameters": {"p": 20000, "q": 5000}
        },
        {
            "name": "Quality",
            "weight": 0.4,
            "type": "benefit",
            "preference_function": "gaussian",
            "parameters": {"sigma": 10}
        },
        {
            "name": "Delivery",
            "weight": 0.3,
            "type": "cost",
            "preference_function": "v_shape",
            "parameters": {"p": 5}
        }
    ],
    "performance_matrix": [
        [100000, 85, 12],  # Alt A
        [120000, 92, 8],   # Alt B
        [80000, 78, 15],   # Alt C
        [110000, 88, 10]   # Alt D
    ]
}

Flow Calculations

  • Positive Flow (Phi+): How much an alternative outranks others
  • Negative Flow (Phi-): How much an alternative is outranked
  • Net Flow (Phi): Phi+ - Phi- (used for complete ranking)

PROMETHEE I vs II

  • PROMETHEE I: Partial ranking based on Phi+ and Phi- separately (allows incomparabilities)
  • PROMETHEE II: Complete ranking based on net flow Phi

GAIA Visualization

The GAIA plane provides:

  • 2D projection of criteria and alternatives
  • Decision axis showing weight sensitivity
  • Clustering of similar alternatives
  • Criteria correlation identification

Input Schema

{
  "alternatives": ["string"],
  "criteria": [
    {
      "name": "string",
      "weight": "number",
      "type": "benefit|cost",
      "preference_function": "usual|u_shape|v_shape|level|linear|gaussian",
      "parameters": "object"
    }
  ],
  "performance_matrix": "2D array of numbers",
  "options": {
    "method": "PROMETHEE_I|PROMETHEE_II",
    "gaia_visualization": "boolean",
    "sensitivity_analysis": "boolean"
  }
}

Output Schema

{
  "ranking": [
    {
      "alternative": "string",
      "rank": "number",
      "phi_plus": "number",
      "phi_minus": "number",
      "phi_net": "number"
    }
  ],
  "outranking_matrix": "2D array",
  "partial_ranking": {
    "preferred_pairs": ["object"],
    "incomparable_pairs": ["object"]
  },
  "gaia_data": {
    "alternative_coordinates": "object",
    "criteria_axes": "object",
    "decision_axis": "object"
  },
  "sensitivity_results": "object"
}

Best Practices

  1. Select appropriate preference functions based on criterion characteristics
  2. Use PROMETHEE I when incomparabilities are meaningful
  3. Set thresholds (p, q) based on domain expertise
  4. Analyze GAIA plane for insights beyond rankings
  5. Validate results with stakeholders
  6. Compare with other MCDA methods for robustness

Integration Points

  • Receives weights from AHP Calculator or Stakeholder Preference Elicitor
  • Feeds into Decision Visualization for GAIA planes
  • Connects with ELECTRE Comparator for method comparison
  • Supports Sensitivity Analyzer for weight robustness testing

Signals

GitHub stars
2k
Forks
112
Last commit
Sep 2026
Advanced
Item type
skill
Key
promethee-evaluator
Source
github.com/a5c-ai/babysitter