• Skip to main content
  • Skip to secondary menu
  • Skip to primary sidebar
  • Skip to secondary sidebar
  • Skip to footer
  • Home
  • Resources
    • Calculators
      • ISO Certification Cost Calculator
      • Cost of Quality Calculator
    • Lowest Cost ISO Services Quote Program
    • Online Gap Checklists
      • ISO 9001 Gap Checklist
        • ISO 9001 Gap Checklist Overview
        • ISO 9001 Gap Checklist Sample
        • ISO 9001 Gap Checklist Dashboard
      • ISO 45001 Gap Checklist
        • 45001 Checklist Gap Checklist Overview
        • ISO 45001 Gap Checklist Sample
        • ISO 45001 Gap Checklist Dashboard
      • ISO 27001 Gap Checklist
        • ISO/IEC 27001 Gap Checklist Overview
        • ISO 27001 Gap Checklist Sample
        • ISO 27001 Gap Checklist Dashboard
    • White Papers
      • AI and Quality Management: Many Questions, Few Answers
      • A Guide to Quality Risk Management
      • ISO 9001 Updates FAQ
      • Integrating ISO 27001 and ISO 9001
    • Job Salary Reports
      • Quality Professionals Salary Report
    • Free Quality Ebook
    • Glossary
  • Articles
    • Environment
    • Cybersecurity
      • Artificial Intelligence
      • Automation
      • Career
      • Certification Management
      • Continuous Improvement
      • Documentation
      • ISO 27001
      • Information Security Mgt. Systems (ISMS)
      • Management
      • Regulatory
      • Risk Management
      • Software
      • Supplier Quality
      • Sustainability
    • Management Systems
    • Manufacturing
    • Quality
      • Artificial Intelligence
      • Automation
      • Career
      • Certification Management
      • Continuous Improvement
      • Cost of Quality
      • Documentation
      • ISO 9001
      • LEAN-6 Sigma
      • Product Safety
      • Quality Management
      • Regulatory
      • Risk Management
      • Root Cause
      • Skills
      • Software
      • Supplier Quality
      • Sustainability
    • Safety
      • Product Safety Certification
      • Risk Management
  • What We Do
    • About Conformance 1
    • Group Purchasing
    • Negotiated Discounts
    • Why Buy Through Us?
  • Products/Services
    • Name Your Fee Training
    • Registrar Directory
    • Software Directory
    • Consultant Directory
  • Online Gap Checklists
    • ISO 9001 Dashboard
    • ISO 45001 Dashboard
    • ISO 27001 Dashboard
  • Contact
    • General Inquiries
    • Ask an ISO Expert
  • Login
    • Login
    • Log Out
Conformance1

Conformance1

Tools for conforming to standards, goals and processes

Design and Implementation of an Open-Source Security Operations Center for Effective Cyber Threat Detection and Response

Leave a Comment Filed Under: Cybersecurity-Management

  • The study presents a cost-effective, open-source Security Operations Center (SOC) architecture utilizing tools like Wazuh, Suricata, and The Hive to detect and respond to cybersecurity threats in small and medium-sized organizations.
  • The architecture effectively detects various cyber threats, including brute-force attacks, malware downloads, and denial-of-service attacks, while offering automated incident response, compliance monitoring, and configuration assessment.
  • Compared to existing frameworks, the proposed design incorporates unique features like standalone threat intelligence, comprehensive compliance monitoring, and a detailed case management system to enhance cybersecurity resilience.

This study addresses the growing need for effective cybersecurity solutions by designing an open-source Security Operations Center (SOC) tailored for small and medium-sized enterprises. Recognizing the increasing frequency and sophistication of cyberattacks—ranging from ransomware to SQL injections—the proposed architecture integrates multiple components to ensure comprehensive threat detection, response, and compliance monitoring. Key tools include Wazuh for extended detection and response (XDR) and security information and event management (SIEM), Suricata for network intrusion detection, and The Hive for case management. The architecture focuses on providing full visibility across digital assets while remaining affordable and scalable for organizations with limited resources.

The architecture’s implementation follows a two-phase approach: tool selection, operational design, and infrastructure setup and testing. Tools were selected based on open-source availability, scalability, and seamless integration capabilities. Wazuh, chosen for its multifunctional platform, manages log collection, threat detection, and automated incident response. Suricata detects network anomalies, while The Hive handles case management and incident investigation. These components collect and analyze data from various endpoints, monitor vulnerabilities, assess compliance, and provide actionable intelligence. The operational architecture ensures a streamlined data flow, enabling rapid detection and response to security incidents.

Testing the architecture involved simulating various cyberattack scenarios, including brute-force login attempts, malware downloads, and denial-of-service attacks. The system detected and mitigated each scenario, demonstrating the architecture’s effectiveness. For instance, Wazuh’s active response module identified multiple failed login attempts and automatically blocked malicious IP addresses. Compliance assessments were conducted to ensure alignment with standards like PCI DSS, HIPAA, and GDPR, with vulnerability detection modules scanning for outdated software and misconfigurations. These capabilities underscore the architecture’s comprehensive threat management, from detection to resolution.

Compared to previous SOC designs, the proposed architecture introduces several enhancements, including standalone threat intelligence integration, configuration assessment, and compliance monitoring—features often missing in similar frameworks. By providing a detailed mapping of components and practical application through real-world attack scenarios, the study offers a valuable and accessible solution for organizations seeking robust cybersecurity infrastructure without incurring high costs. Future research could explore automating the deployment process and leveraging artificial intelligence to enhance detection accuracy and response speed, reinforcing the architecture’s potential as a scalable and effective cybersecurity solution.

Read the full article

Filed Under: Cybersecurity-Management

Reader Interactions

Leave a Reply

You must be logged in to post a comment.

Primary Sidebar

Search

Email Newsletter

News delivered to your inbox

Name(Required)
Newsletter Preferences(Required)
This field is hidden when viewing the form
This field is for validation purposes and should be left unchanged.

Related Items

Help us improve our tool

Have a suggestion for improving our ISO Gap Analysis Checklist? Let us know.

Secondary Sidebar

Categories

Recent Posts

  • Important Role of Thermal Imaging for Condition Monitoring
  • The Top 10 Security Awareness Training Solutions For Business
  • Improving Data Cleaning by Learning From Unstructured Textual Data
  • Operational Key Performance Indicators (KPIs) 2.0: A Smarter Way to Visualize and Use Your Metrics
  • Mastering the 8D Problem-Solving Methodology: A Guide to Root Cause Analysis in Manufacturing

Footer

Important Resources

Cost of Quality Calculator

ISO 9001 Online Gap Analysis

ISO Certification Cost Calculator

Free Quality Ebook

Process Improvement Survey

ISO 9001 Glossary

 

Recent Posts

  • Important Role of Thermal Imaging for Condition Monitoring
  • The Top 10 Security Awareness Training Solutions For Business
  • Improving Data Cleaning by Learning From Unstructured Textual Data
  • Operational Key Performance Indicators (KPIs) 2.0: A Smarter Way to Visualize and Use Your Metrics
  • Mastering the 8D Problem-Solving Methodology: A Guide to Root Cause Analysis in Manufacturing

Search

Contact Us

About Us

Privacy Policy

 

Copyright © 2025 · Conformance1 · Log in