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Agricultural Robotics Jobs in Virginia (NOW HIRING)

Are interested in autonomy, agriculture, robotics, industrial systems, or remote operations. * Want to build the operating model for a new category of work Useful experience Any of the following ...

About Ornata Ornata is building the remote operations platform for agriculture. We help farms ... About the role We are looking for a Senior Robotics Software Engineer to design and own the ...

Helping students and staff on smart farming studies involving UAV, and robots. May carry or use a firearm as a part of daily responsibilities. Required Qualifications Knowledge of general agriculture ...

Senior Electrical Engineer

Williamsburg, VA ยท On-site

$103K - $134K/yr

... agricultural equipment, rail and industrial applications. Job Category Engineering & Science ... Experience with Fanuc, Motoman, Panasonic or other robots What we offer At Bridgestone, what really ...

Agricultural Robotics information

What is agricultural robotics?

Agricultural robotics refers to the use of automated machines, robots, and artificial intelligence technologies to assist in various farming tasks such as planting, harvesting, weeding, and crop monitoring. These robots can improve efficiency, reduce labor costs, and help address labor shortages in agriculture. They are designed to perform repetitive or physically demanding tasks with precision, ultimately supporting sustainable and productive farming practices.

What are the key skills and qualifications needed to thrive in agricultural robotics?

To thrive in Agricultural Robotics, you need a solid background in engineering, robotics, computer science, and agriculture, often supported by a relevant degree. Familiarity with programming languages (such as Python or C++), machine learning frameworks, and automation systems like PLCs or ROS is typically required. Strong problem-solving, teamwork, and communication skills help professionals adapt innovative solutions to complex farming challenges. These competencies are essential for integrating robotics into agriculture, improving efficiency, and addressing labor shortages in the industry.

What are some common challenges faced by professionals working in agricultural robotics, and how can they be addressed?

Professionals in agricultural robotics often encounter challenges such as adapting robotic systems to diverse field conditions, ensuring reliable operation in outdoor environments, and integrating new technologies with existing farm equipment. Addressing these issues typically involves close collaboration with agronomists, farmers, and engineers to test and refine prototypes under real-world conditions. Staying updated on the latest advancements in sensor technology and autonomous navigation, as well as participating in interdisciplinary teams, can help overcome these obstacles and contribute to continuous improvement in this rapidly evolving field.

What is the difference between Agricultural Robotics vs Agricultural Equipment Technician?

AspectAgricultural RoboticsAgricultural Equipment Technician
Required CredentialsTechnical certifications, robotics, automation trainingTechnical certifications, machinery repair, maintenance training
Work EnvironmentResearch labs, farms, manufacturing facilitiesFarms, repair shops, equipment dealerships
Employer & Industry UsageAgtech companies, research institutions, farmsFarm equipment manufacturers, dealerships, service providers

While both roles involve working with agricultural machinery, Agricultural Robotics focuses on developing, programming, and maintaining automated systems and robots used in farming. Agricultural Equipment Technicians primarily repair and maintain traditional farm machinery. The roles overlap in technical skills but differ in focus: robotics vs. mechanical repair.

What job categories do people searching Agricultural Robotics jobs in Virginia look for?

The top searched job categories for Agricultural Robotics jobs in Virginia are:

What cities in Virginia are hiring for Agricultural Robotics jobs?

Cities in Virginia with the most Agricultural Robotics job openings:

Infographic showing various Agricultural Robotics job openings in Virginia as of August 2026, with employment types broken down into 100% Full Time. Highlights an 92% In-person, and 8% Remote job distribution.

Autonomous Operations Process Engineer

Ornata

Richmond, VA โ€ข On-site

$125 - $150/hr

Other

Posted 6 days ago


Key responsibilities

  • Operate Ornata-enabled machinery remotely as part of the operations team.

  • Turn live operational experience into workflows, clear SOPs, operator guides, checklists, decision trees, and escalation procedures.

  • Review incidents, near misses, operator feedback, customer feedback, and engineering changes to identify required process updates.


Job description

About Ornata

Ornata is building the remote operations platform for agriculture.

We help farms operate machinery without a human in the cab, using the equipment they already own. Our service combines retrofit autonomy hardware, remote operators, AI, and operational systems to unlock the benefits of autonomy for every farm.

We are working with some of Australiaโ€™s leading broadacre farming businesses and are now building the operational foundations required to scale safely, reliably, and repeatably.

About the role

We are looking for an Autonomous Operations Process Engineer to help define how remote machinery operations are performed at Ornata.

This is a hands-on operations engineering role. You will spend significant time working directly in remote operations, learning how our systems behave in the real world, then turning that experience into clear procedures, checklists, decision trees, training material, and platform requirements.

The objective is simple but important: there should be no action taken by a remote operator that is not defined in an operating process.

You will be responsible for building the process layer that allows Ornata to scale from a small expert team into a repeatable, auditable, high-quality remote operations service.

Responsibilities
  • Operate Ornata-enabled machinery remotely as part of the operations team.
  • Turn live operational experience into workflows, clear SOPs, operator guides, checklists, decision trees, and escalation procedures.
  • Own the documentation update cycle for remote operations procedures.
  • Review incidents, near misses, operator feedback, customer feedback, and engineering changes to identify required process updates.
  • Ensure procedures are practical, usable, and followed by operators in real-world conditions.
  • Help define handover processes, communication protocols, stop/go criteria, authority limits, and operational logging requirements.
  • Identify where operator ambiguity exists and design process improvements to remove it.
  • Work with the engineering team to define product and platform features that improve operational structure, consistency, and safety.
  • Support operator onboarding and training as Ornata grows the remote operations team.
  • Build the foundations for a scalable operating system for autonomous and remotely operated farm machinery.

This role is unusual. We do not expect to find someone who has done exactly this before.

We are looking for someone who is smart, practical, clear-thinking, and willing to get close to the operation. You may come from process engineering, manufacturing engineering, industrial engineering, systems engineering, field engineering, automation, robotics, control-room operations, or another technical operations environment.

You will likely be a good fit if you:

  • Like turning messy real-world work into clear, repeatable systems.
  • Are comfortable operating close to machinery, technology, and live customer environments.
  • Can write clearly and precisely.
  • Think naturally in terms of procedures, decision points, exceptions, risks, and feedback loops.
  • Have strong attention to detail without becoming bureaucratic.
  • Are comfortable working in an early-stage company where the right answer often needs to be discovered, not inherited.
  • Can move between hands-on operations and structured documentation.
  • Are interested in autonomy, agriculture, robotics, industrial systems, or remote operations.
  • Want to build the operating model for a new category of work
Useful experience

Any of the following would be helpful, but none are strict requirements:

  • Process engineering, manufacturing engineering, industrial engineering, or systems engineering.
  • Experience writing SOPs, work instructions, operating procedures, or training material.
  • Experience in a control room, operations centre, field operations, commissioning, automation, robotics, mining, aviation, energy, logistics, or industrial environment.
  • Mechanical, mechatronics, electrical, aerospace, software, or industrial engineering background.
  • Experience with incident review, root cause analysis, continuous improvement, or quality systems.
  • Familiarity with agricultural machinery or broadacre farming.
  • Be part of an early-stage team where your work will directly shape how the company scales.
  • Open landscape to take on responsibility to develop the role within the business.
  • Quick-paced career growth for the tenacious go-getters
  • Work across operations, product, engineering, safety, and customer delivery.
  • Be part of an inner city Melbourne-based team building technology for one of Australiaโ€™s most important industries.
What success looks like

In this role, success means Ornataโ€™s remote operations become more repeatable, structured, robust and easier to scale.

Over time, you will help build an operating system where routine operator actions are covered by clear procedures, new operators can be trained consistently, operational deviations are logged and reviewed, incidents and edge cases lead to process or product improvements, and customers experience a reliable and professional service as Ornata scales.

Application question suggestion

We are especially interested in hearing about times where you have taken a complex real-world process and made it clearer, safer, more repeatable, or easier to scale.

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