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Substation Automation Engineer - Grid Modernization

Job in Houston, Harris County, Texas, 77246, USA
Listing for: Black & Veatch Corporation
Full Time position
Listed on 2026-07-24
Job specializations:
  • IT/Tech
    Systems Engineer, Cybersecurity
  • Engineering
    Systems Engineer, Cybersecurity
Salary/Wage Range or Industry Benchmark: 120000 - 170000 USD Yearly USD 120000.00 170000.00 YEAR
Job Description & How to Apply Below

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Date:
Jul 16, 2026

Location:

Houston, TX, US Overland Park, KS, US Dallas, TX, US Tualatin, OR, US Atlanta, GA, US Ann Arbor, MI, US Orlando, FL, US Cary, NC, US

Company:
Black & Veatch Family of Companies

Company:
Black & Veatch Corporation

Opportunity Type:
Staff

Project Only Hire:
No

The Opportunity

In this role, you may have the opportunity to:

  • Lead the transition of IEC
    61850‑based digital and virtual substations from pilot to production, shaping real‑world grid modernization outcomes.
  • Design and standardize secure, vendor‑agnostic substation automation architectures that improve resilience, flexibility, and scalability.
  • Serve as a technical leader and subject‑matter expert, influencing system architecture, best practices, and emerging standards.
  • Collaborate with utilities, technology partners, and industry groups (including vPAC Alliance) to help define the future of protection, automation, and control.

Candidates located near any Black & Veatch U.S. Regional Office may be considered, with preference for the following locations - Kansas City (KS), Atlanta (GA), Raleigh (NC), Dallas (TX), Houston (TX), Orlando (FL), Portland (OR) or Phoenix (AZ).

The Team

Black & Veatch is expanding its Power SCADA team to support a strategic grid modernization initiative focused on IEC 61850 ‑ based substation automation and virtual substation technologies. As a founding member of the Virtual Protection, Automation, and Control (vPAC) Alliance, Black & Veatch is collaborating with industry leaders to advance open, secure, and vendor ‑ agnostic digital substation solutions that replace traditional, hardware ‑ intensive architectures with virtualized, software ‑ defined platforms.

Following successful pilot efforts, BV is now transitioning virtual substations into production environments. This role is being created to bring in experienced SCADA professionals who can help design, implement, standardize, and support production ‑ ready Power SCADA solutions that enable resilient, flexible, and future ‑ ready grid infrastructure.

Key Responsibilities
  • Develop SCL engineering artifacts including ICD, CID, and SCD files, datasets, logical node mappings, reporting and control blocks, and GOOSE publications and subscriptions.
  • Configure and validate MMS, GOOSE, and SV messaging for protection, automation, monitoring, and SCADA applications.
  • Design and document station‑bus and process‑bus network architectures using PRP/HSR, VLANs, QoS, multicast management, and traffic segmentation practices.
  • Design deterministic real‑time networking paths for time‑sensitive protection and automation applications, incorporating latency budgeting, PTP timing performance, and behaviors defined for substation‑class devices meeting IEC
    61850‑3 and IEEE
    1613 environmental and EMC requirements.
  • Diagnose and optimize real‑time network behavior through traffic‑capture analysis, timing‑accuracy evaluation, and system‑level tuning techniques for time‑critical digital‑substation workloads.
  • Develop PTP‑based time‑synchronization architectures including grand master, boundary, and transparent clock configurations and incorporate timing considerations into the system design.
Protection, Automation & SCADA Integration
  • Integrate multi‑vendor IEDs with protection settings and logic, coordinating measurements, controls, alarms, and event data with SCADA and HMI systems.
  • Apply IEC
    61850 data‑modeling concepts to confirm interoperability across mixed fleets of protection and control devices.
Cybersecurity & System Hardening
  • Incorporate cybersecurity principles into system architecture, including authentication, role‑based access control, network segmentation, secure communications, and device hardening.
  • Apply cyber‑informed engineering principles by identifying high‑consequence functions and integrating protective measures directly into system architecture, embedding security decisions from the earliest stages of engineering rather than treating them as add‑on controls.
Virtualization of Substation Functions
  • Develop and configure virtualized protection, HMI, gateway/RTU, and related substation applications on platforms including…
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