{ "cells": [ { "cell_type": "markdown", "metadata": {}, "source": [ "# Advanced Graph Analytics\n", "\n", "## Overview\n", "\n", "This notebook demonstrates advanced graph analytics using GraphAnalyzer, CentralityCalculator, CommunityDetector, ConnectivityAnalyzer, GraphValidator, and Deduplicator.\n", "\n", "### Learning Objectives\n", "\n", "- Use GraphAnalyzer for comprehensive graph analysis\n", "- Use CentralityCalculator for advanced centrality measures\n", "- Use CommunityDetector for community detection\n", "- Use ConnectivityAnalyzer for connectivity analysis\n", "- Use GraphValidator and Deduplicator for graph quality\n", "\n", "---\n", "\n", "## Workflow: Graph Analysis → Centrality → Communities → Connectivity → Validation → Deduplication\n" ] }, { "cell_type": "code", "execution_count": null, "metadata": {}, "outputs": [], "source": [ "from semantica.kg import GraphBuilder, GraphAnalyzer, CentralityCalculator, CommunityDetector, ConnectivityAnalyzer, GraphValidator, Deduplicator\n", "\n", "builder = GraphBuilder()\n", "analyzer = GraphAnalyzer()\n", "\n", "entities = [\n", " {\"id\": \"e1\", \"type\": \"Organization\", \"name\": \"Apple Inc.\", \"properties\": {}},\n", " {\"id\": \"e2\", \"type\": \"Person\", \"name\": \"Tim Cook\", \"properties\": {}},\n", " {\"id\": \"e3\", \"type\": \"Location\", \"name\": \"Cupertino\", \"properties\": {}}\n", "]\n", "\n", "relationships = [\n", " {\"source\": \"e2\", \"target\": \"e1\", \"type\": \"CEO_of\", \"properties\": {}},\n", " {\"source\": \"e1\", \"target\": \"e3\", \"type\": \"located_in\", \"properties\": {}}\n", "]\n", "\n", "kg = builder.build(entities, relationships)\n", "\n", "metrics = analyzer.compute_metrics(kg)\n", "\n", "print(f\"Graph metrics:\")\n", "print(f\" Entities: {metrics.get('entity_count', 0)}\")\n", "print(f\" Relationships: {metrics.get('relationship_count', 0)}\")\n", "print(f\" Density: {metrics.get('density', 0):.3f}\")\n" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "## Step 2: Advanced Centrality Measures\n", "\n", "Calculate multiple centrality measures.\n" ] }, { "cell_type": "code", "execution_count": null, "metadata": {}, "outputs": [], "source": [ "centrality_calculator = CentralityCalculator()\n", "\n", "degree_centrality = centrality_calculator.calculate_centrality(kg, measure=\"degree\")\n", "betweenness_centrality = centrality_calculator.calculate_centrality(kg, measure=\"betweenness\")\n", "\n", "print(f\"Degree centrality: {len(degree_centrality)} entities\")\n", "print(f\"Betweenness centrality: {len(betweenness_centrality)} entities\")\n" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "## Step 3: Community Detection\n", "\n", "Detect communities in the graph.\n" ] }, { "cell_type": "code", "execution_count": null, "metadata": {}, "outputs": [], "source": [ "community_detector = CommunityDetector()\n", "\n", "communities = community_detector.detect_communities(kg)\n", "\n", "print(f\"Detected {len(communities)} communities\")\n", "for i, community in enumerate(communities[:3], 1):\n", " print(f\" Community {i}: {len(community)} entities\")\n" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "## Step 4: Connectivity Analysis\n", "\n", "Analyze graph connectivity.\n" ] }, { "cell_type": "code", "execution_count": null, "metadata": {}, "outputs": [], "source": [ "connectivity_analyzer = ConnectivityAnalyzer()\n", "\n", "connectivity = connectivity_analyzer.analyze_connectivity(kg)\n", "\n", "print(f\"Connectivity analysis:\")\n", "print(f\" Is connected: {connectivity.get('is_connected', False)}\")\n", "print(f\" Components: {len(connectivity.get('components', []))}\")\n" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "## Step 5: Graph Validation and Deduplication\n", "\n", "Validate and deduplicate the graph.\n" ] }, { "cell_type": "code", "execution_count": null, "metadata": {}, "outputs": [], "source": [ "graph_validator = GraphValidator()\n", "deduplicator = Deduplicator()\n", "\n", "validation_result = graph_validator.validate(kg)\n", "deduplicated_kg = deduplicator.deduplicate(kg)\n", "\n", "print(f\"Graph validation: {validation_result.get('valid', False)}\")\n", "print(f\"Deduplicated entities: {len(deduplicated_kg.get('entities', []))}\")\n" ] }, { "cell_type": "markdown", "metadata": {}, "source": [ "## Summary\n", "\n", "You've learned advanced graph analytics:\n", "\n", "- **GraphAnalyzer**: Comprehensive graph analysis and metrics\n", "- **CentralityCalculator**: Multiple centrality measures\n", "- **CommunityDetector**: Community detection\n", "- **ConnectivityAnalyzer**: Connectivity analysis\n", "- **GraphValidator**: Graph validation\n", "- **Deduplicator**: Graph deduplication\n" ] } ], "metadata": { "language_info": { "name": "python" } }, "nbformat": 4, "nbformat_minor": 2 }