Mg. Mario Villanueva Alveal

Jefe de carrera

  • Ciberseguridad
  • IoT
  • Cloud
  • Networking
Línea de la Facultad de Ingeniería
IA, Sistemas Complejos y Modelamiento Matemático

Formación académica

  1. Magíster en Gestión de Tecnologías de la Información

    Universidad Tecnológica de Chile INACAPChile

  2. Ingeniero en Informática

    Universidad Católica de TemucoChile

Certificaciones

  • Cisco

    • CCST Cybersecurity · Cisco Certified Support Technician Cybersecurity
    • CCNA · Cisco Certified Network Associate Routing and Switching
    • CCNP ENCOR · Cisco Certified Specialist – Enterprise Core
    • Certified Instructor Trainer · Cisco Networking Academy
  • Microsoft

    • Microsoft Technology Associate Windows Server
  • Red Hat

    • RHCSA · Red Hat Certified System Administrator
  • Amazon Web Services

    • AWS Certified Cloud Practitioner
  • Python Institute

    • PCEP-30-02 · Certified Entry-Level Python Programmer

Diplomados

    • Diplomado en Técnicas de Administración, Conectividad y Redes
    • Diplomado en Docencia Universitaria por Competencias

Publicaciones

2026

  1. Trabajo de congreso

    Architecture of an Academic Security Operations Center Based on Threat Intelligence and STIX/TAXII Standards

    Mario Villanueva, Oscar Uribe, Marcos Lévano

2024

  1. Trabajo de congreso

    High Availability in Private Cloud: Approaches and Possibilities

    Alejandro Mellado-Gatica, Julio Rojas-Mora, Mario Villanueva-Alveal

    Cloud computing, typically provided by large infrastructure providers, allows companies to utilize services efficiently under the premise of cost reduction. Known as the “public cloud,” this model contrasts with the “private cloud,” often perceived as costly and complex to implement. However, when high availability is required, the complexities of both models align, and the costs associated with public cloud services can become prohibitive. This paper explores the technical feasibility and economic viability of deploying private cloud infrastructure using refurbished hardware. It presents a detailed architecture incorporating Canonical MaaS for Metal-as-a-Service (MaaS), OpenNebula for Infrastructure-as-a-Service (IaaS), and Incus for Platform-as-a-Service (PaaS), with Moodle as the application layer case study. The study finds that private clouds, especially those utilizing refurbished hardware, not only offer a costeffective alternative to public clouds but also enhance security with complete control over data and systems, provide customizable self-management to meet specific organizational needs, utilize existing resources more efficiently for greater sustainability, and ensure technological sovereignty by reducing dependency on public cloud providers. These benefits collectively underscore the strategic advantages of adopting private cloud infrastructures in certain contexts.