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Combat Camera Jobs in Texas (NOW HIRING)

Research Engineer III

Bryan, TX · On-site

$80 - $100/hr

W. Bush Combat Development Complex (BCDC), the Research Engineer for Multi‑Agent Autonomy ... Conducts hardware exploration and sensor selection (e.g., LiDAR, cameras, Radar, GNSS) to define ...

Bush Combat Development Complex (BCDC), the Research Engineer for Multi-Agent Autonomy develops ... LiDAR, cameras, Radar, GNSS) to define perception systems tailored to specific project and ...

... combat. You should be comfortable writing code and working with robotic components (actuators ... Integrate and fuse sensor data from cameras and IMUs (using methods such as EKF/UKF) on embedded ...

Robotics Engineer, Senior

Austin, TX · On-site

$100 - $130/hr

... combat. You should be comfortable writing code and working with robotic components (actuators ... Integrate and fuse sensor data from cameras and IMUs (using methods such as EKF/UKF) on embedded ...

Media Manager

Houston, TX · On-site

$65K - $75K/yr

BLD PWR aims to disrupt systemic oppression, combat state violence, and center wellness for ... Manages and executes camera work, audio and visual for BLD PWR content and productions.

BLD PWR aims to disrupt systemic oppression, combat state violence, and center wellness for ... Manages and executes camera work, audio and visual for BLD PWR content and productions.

Combat Camera information

What is a combat camera?

Combat Camera personnel are military professionals trained to capture still and video imagery in both combat and non-combat environments. Their work documents military operations, provides visual information for decision-makers, and supports public affairs and historical records. They often deploy with operational units to ensure accurate and timely visual documentation, sometimes working in hazardous conditions. Their imagery can be used for intelligence, training, and public dissemination, making their role both strategic and historical.

What skills and qualifications are needed to thrive as a combat camera professional?

To thrive as a Combat Camera professional, you need expertise in photography, videography, digital media editing, and a strong understanding of military protocols, often supported by specialized military training courses. Proficiency with professional cameras, editing software (such as Adobe Creative Suite), and secure data transmission systems is essential. Exceptional adaptability, composure under pressure, and strong communication skills help you effectively document operations in dynamic and sometimes hazardous environments. These skills are crucial for accurately capturing and conveying critical information that supports military operations, public affairs, and historical documentation.

What are some common challenges faced by combat camera personnel in the field?

Combat Camera professionals often operate in challenging and unpredictable environments, where capturing high-quality visual documentation can be difficult due to factors like limited lighting, fast-moving situations, and equipment limitations. They must balance the need for compelling imagery with operational security and safety, frequently working alongside military units in active zones. Adaptability, quick decision-making, and strong communication skills are essential, as Combat Camera personnel coordinate closely with both commanding officers and fellow media specialists to ensure mission objectives are met while maintaining safety protocols.

What is the difference between Combat Camera vs Combat Photographer?

AspectCombat CameraCombat Photographer
CredentialsMilitary training, photography skillsProfessional photography experience, military or civilian
Work EnvironmentMilitary operations, combat zonesConflict zones, military assignments
EmployerU.S. military, defense agenciesMilitary units, media outlets, freelance

Combat Camera personnel are military photographers trained to document military operations, often in combat zones. Combat Photographers may work for the military or civilian media, capturing similar scenes but not necessarily as part of a military unit. While both roles involve photography in conflict areas, Combat Camera is a specialized military role with specific training and duties.

How do you become a combat camera?

To become a combat camera professional, individuals typically need to join the military or a government agency with a photography or videography role, such as the U.S. Army or Marine Corps, and complete specialized training in combat photography and media operations. Relevant skills include photography, videography, editing, and the ability to operate in high-stress environments; security clearances and physical fitness are also often required.
Infographic showing various Combat Camera job openings in Texas as of August 2026, with employment types broken down into 49% Full Time, and 51% Part Time. Highlights an 90% In-person, and 10% Remote job distribution.

Research Engineer III

Bryan, TX • On-site


Texas A&M University
Colleges, Universities, and Professional Schools • 1 - 5K employees

7.8

Company rating: 7.8 out of 10

Based on 146 frontline employees who took The Breakroom Quiz

233rd of 627 rated colleges and universities

Great coworkers

People enjoy working here

Good employer


$80 - $100/hr

Other

Medical, Retirement, PTO

Posted 10 days ago


Job description

Job Title

Research Engineer III – Agency – Texas A&M University System Offices Department – Bush Combat Development Complex – Proposed Minimum Salary – Commensurate – Job Location – Bryan, Texas – Job Type – Staff

Job Description Summary

The Research Engineer III independently applies advanced engineering principles to design and implement the core algorithms and software architectures that power our multi‑agent systems. At the George H.W. Bush Combat Development Complex (BCDC), the Research Engineer for Multi‑Agent Autonomy develops next‑generation autonomous systems that enable coordinated, heterogeneous fleets to operate in complex, unstructured environments. This research focuses on the integration of diverse platforms, ranging from tactical UTVs and military‑grade UGVs to unmanned air vehicles (UAVs) and autonomous helicopters. We aim to solve the fundamental challenges of multi‑agent coordination and shared situational awareness, fostering the human‑agent teaming essential for future mission success. By bridging the gap between sophisticated algorithms and real‑world application, our team develops technologies that significantly enhance unit capabilities, mobility, and speed of action. We translate theoretical breakthroughs into field‑demonstrated reality through System Experimentation and Field Testing using our multi‑vehicle fleet in the diverse off‑road terrain of the RELLIS campus.

Responsibilities
  • Designs, implements, and maintains software modules for multi‑agent coordination, including task allocation, decentralized path planning, and coordinated multi‑vehicle behaviors.
  • Produces efficient code (Python/C++) subject to computational and resource constraints to function effectively on embedded hardware and within ROS2 middleware.
  • Implements communication protocols and data‑sharing architectures to support shared situational awareness across heterogeneous air and ground assets.
  • Optimizes perception and navigation stacks for reliable operation across diverse hardware platforms (e.g., tactical UTVs, military‑grade UGVs, and UAVs).
  • Troubleshoots, debugs, maintains, and improves existing software and algorithms within the BCDC autonomy stacks.
  • Develops and utilizes multi‑level simulation environments to validate multi‑agent strategies and algorithmic performance prior to field deployment.
  • Conducts hardware exploration and sensor selection (e.g., LiDAR, cameras, Radar, GNSS) to define perception systems tailored to specific project and algorithmic requirements.
  • Performs hands‑on system hardware integration and tuning for perception, navigation, and coordination subsystems, ensuring hardware‑software synergy.
  • Tests and deploys programs, applications, and ROS2 nodes in simulation and on physical hardware platforms.
  • Contributes to the development of software‑hardware interfaces for new platforms, including autonomous helicopters and robotic ground vehicles.
  • Independently designs real‑world experiment protocols and corresponding metrics to evaluate the performance of complex multi‑agent systems in unstructured environments.
  • Participates in demonstrations to stakeholders, reviews and evaluates results, and establishes conclusions based on capability performance.
  • Generates technical documentation, system requirements, and user manuals to aid future project developments and technology transition.
  • Collaborates with faculty, senior staff, and project leads to translate high‑level research goals into actionable software requirements.
  • Contributes significantly to technical reports, presentations, and peer‑reviewed publications.
Education and Experience
  • Bachelor’s degree in Engineering, Science or related field or equivalent combination of education and experience.
  • Four years of related experience.
Registration, Certifications, and Licenses
  • Must be able to obtain a U.S. Department of War Security Clearance.
Knowledge, Skills, and Abilities
  • Advanced proficiency in modern C++ and Python for robotics and distributed systems.
  • Ability to perform hardware‑software integration and troubleshoot field‑deployed systems.
  • Excellent communication skills with the ability to convey technical information clearly to senior management.
  • Strong technical writing skills for reports and publications.
  • Highly collaborative and able to work in a team‑based environment.
  • Familiarity with principles of Agile project management in an R&O context.
  • Ability to multi‑task and work cooperatively with others.
Preferred Qualifications
  • Strong understanding of ROS2 or similar distributed middleware (e.g., DDS, Zenoh, ZeroMQ, Kafka) and Linux‑based development environments.
  • Familiarity with networking fundamentals (TCP/UDP, multicast) and their application in distributed robotic communication.
  • Familiarity with robotic sensor hardware (UDAR, cameras, IMU, GNSS) and their integration within autonomous stacks.
  • Familiarity with multi‑level simulation tools (e.g., Isaac Sim, Gazebo) for algorithmic validation.
Other Requirements
  • This is a security‑sensitive position and is restricted to U.S. citizens only.
Benefits

Competitive health benefits; paid vacation, sick leave, and holidays; defined benefit retirement plan including an employer contribution through Teachers Retirement System of Texas (TRS); defined contribution retirement plan via an approved ORP vendor; additional voluntary tax‑deferred annuity options; tuition assistance; and wellness programs to promote work/life balance.

Equal Opportunity Statement

Equal Opportunity/Veterans/Disability Employer. The Texas A&M University System is one of the largest systems of higher education in the nation, with a statewide network of twelve universities, eight state agencies, a comprehensive health science center, Texas A&M‑Fort Worth and Texas A&M‑RELLIS. The A&M System is committed to providing an educational and work environment that is conducive to the personal and professional development of each employee. Each member institution provides equal opportunity and access to all students, employees and prospective employees.

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