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Remote Gps Modeling Jobs (NOW HIRING)

This is a remote position open to candidates residing in the United States. This position requires ... model deployments to a coherent, system-level platform - one that fuses camera, IMU, GPS, and ...

This is a remote position open to candidates residing in the United States. This position requires ... model deployments to a coherent, system-level platform - one that fuses camera, IMU, GPS, and ...

... GPs behind Meta, Revolut, Spotify and Uber. We're building a fully integrated energy company ... This is a remote role. Responsibilities * Own the reliability, performance and scalability of Fuse ...

GIS Analyst

Lafayette, CO · Remote

$28.85 - $43.27/hr

This is a fully remote position reporting to the Mapping Director / GIS Manager, with no in-office ... GPS) into GIS * Proficiency with Python/ArcPy or model automation, and with AutoCAD Civil 3D or ...

Life360 is a Remote First company, which means a remote work environment will be the primary ... Model Deployment: Containerize, deploy, and scale machine learning models as high-availability ...

Life360 is a Remote First company, which means a remote work environment will be the primary ... Model Deployment: Containerize, deploy, and scale machine learning models as high-availability ...

Life360 is a Remote First company, which means a remote work environment will be the primary ... Train, deploy, and scale machine learning models as high-availability microservices or batch ...

Life360 is a Remote First company, which means a remote work environment will be the primary ... Train, deploy, and scale machine learning models as high-availability microservices or batch ...

React Native Engineer

$120K - $150K/yr

Remote- USA Compensation: $120,000 - $150,000 / year Description Trilon is building a supercharged ... Integrate with device capabilities such as GPS, camera, photo capture, and sensors * Build ...

Contract Compensation: $20 - $27 hourly Contractor Work Model: Onsite - onsite Responsibilities ... Map excavation sites and features accurately using GPS units. * Assist in laboratory work and GIS ...

Contract Compensation: $20 - $27 hourly Contractor Work Model: Onsite - onsite Responsibilities ... Map excavation sites and features accurately using GPS units. * Assist in laboratory work and GIS ...

Contract Compensation: $20 - $27 hourly Contractor Work Model: Onsite - onsite Responsibilities ... Map excavation sites and features accurately using GPS units. * Assist in laboratory work and GIS ...

Contract Compensation: $20 - $27 hourly Contractor Work Model: Onsite - onsite Responsibilities ... Map excavation sites and features accurately using GPS units. * Assist in laboratory work and GIS ...

Contract Compensation: $20 - $27 hourly Contractor Work Model: Onsite - onsite Responsibilities ... Map excavation sites and features accurately using GPS units. * Assist in laboratory work and GIS ...

Contract Compensation: $20 - $27 hourly Contractor Work Model: Onsite - onsite Responsibilities ... Map excavation sites and features accurately using GPS units. * Assist in laboratory work and GIS ...

Contract Compensation: $20 - $27 hourly Contractor Work Model: Onsite - onsite Responsibilities ... Map excavation sites and features accurately using GPS units. * Assist in laboratory work and GIS ...

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How much do remote gps modeling jobs pay per hour?

As of Sep 5, 2026, the average hourly pay for remote gps modeling in the United States is $40.33, according to ZipRecruiter salary data. Most workers in this role earn between $31.25 and $43.51 per hour, depending on experience, location, and employer.

What is a remote GPS modeler?

A Remote GPS Modeler is a professional who uses Geographic Positioning System (GPS) technology to create digital models or maps of geographic areas, all while working remotely. Their work often involves collecting, processing, and analyzing spatial data to build accurate representations for industries like surveying, urban planning, agriculture, or logistics. These specialists use specialized software to interpret GPS data and may collaborate with teams digitally to share their findings. Remote GPS Modelers need strong technical skills in geospatial tools and an understanding of coordinate systems and mapping standards. The remote aspect of this job allows professionals to perform their tasks from virtually anywhere with a reliable internet connection.

What are the key skills and qualifications needed to thrive as a remote GPS modeler?

To thrive as a Remote GPS Modeler, you need expertise in geospatial analysis, GPS data interpretation, and mathematical modeling, typically supported by a degree in geography, geoinformatics, or a related field. Familiarity with GIS software (like ArcGIS or QGIS), GPS data collection tools, and data modeling platforms is essential. Strong problem-solving abilities, attention to detail, and effective remote communication skills set candidates apart in this role. These skills ensure accurate spatial data modeling and effective collaboration on distributed teams, which are critical for delivering reliable geospatial solutions.

What are some common challenges faced by professionals in remote GPS modeling roles, and how can they be addressed?

Remote GPS modeling professionals often encounter challenges such as coordinating with geographically dispersed teams, managing large datasets, and ensuring data accuracy without on-site verification. Effective communication through regular virtual meetings and collaborative platforms is key to staying aligned with team members. Utilizing robust version control systems, well-documented workflows, and cloud-based GIS tools can help streamline data management and foster efficient collaboration. Staying updated with the latest industry software and remote sensing technologies is also essential for overcoming technical hurdles.

What is the difference between Remote Gps Modeling vs Remote GIS Analyst?

AspectRemote Gps ModelingRemote GIS Analyst
Required CredentialsGIS certifications, degree in geospatial sciencesGIS certifications, degree in geography or related field
Work EnvironmentData analysis, modeling, software developmentData analysis, map creation, spatial data management
Industry UsageTransportation, logistics, urban planningEnvironmental, urban planning, government agencies
Common Search IntentModeling GPS data, developing GPS-based solutionsAnalyzing spatial data, creating maps

Remote Gps Modeling focuses on developing models and algorithms based on GPS data, often involving software development and data analysis. Remote GIS Analysts primarily analyze spatial data, create maps, and support geographic information systems. While both roles require geospatial credentials, Remote Gps Modeling emphasizes data modeling and software, whereas Remote GIS Analysts focus on spatial data analysis and visualization.

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The most popular types of Gps Modeling jobs are:

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The top searched job categories for Remote Gps Modeling jobs are:

Infographic showing various Remote Gps Modeling job openings in the United States as of August 2026, with employment types broken down into 88% Full Time, 10% Part Time, and 2% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $83,896 per year, or $40.3 per hour.

Full-time

Re-posted yesterday


Job description

About the role:

The Safety AI team builds end-to-end computer vision and machine learning for Samsara's AI dash cameras - delivering real-time driver safety insights and in-cab alerts. 

As a Sr. Manager of Machine Learning, you will lead teams that fuse on-device computer vision with IMU, GPS, and vehicle diagnostic data to detect, interpret, and surface actionable safety events and continuous risk signals. 

You'll own the model lifecycle across edge and cloud - data curation, training, evaluation (including shadow/online experiments), deployment, monitoring, and iteration-and develop the core AI platform that powers these capabilities at fleet scale. You'll partner closely with firmware, full-stack, and Platform teams to ship reliable, low-latency features, grounding detections in the "rules of the road" (e.g., stop signs and speed limits) to maximize precision and customer impact.

Your success will be measured by real outcomes: safety events caught, accident rates reduced, model reliability at production scale, and the velocity at which your team can move from research idea to deployed feature on real vehicles driven by real people.

This is a remote position open to candidates residing in the United States.

This position requires travel up to 5% of the time. Relocation assistance will not be provided for this role.

You should apply if:

  • You want to impact the industries that run our world: The software, firmware, and hardware you build will result in real-world impact-helping to keep the lights on, get food into grocery stores, and most importantly, ensure workers return home safely.
  • You are a life-long learner: We have ambitious goals. Every Samsarian has a growth mindset as we work with a wide range of technologies, challenges, and customers that push us to learn on the go.
  • You believe customers are more than a number: Samsara engineers enjoy a rare closeness to the end user and you will have the opportunity to participate in customer interviews, collaborate with customer success and product managers, and use metrics to ensure our work is translating into better customer outcomes.
  • You are a team player: Working on our Samsara Engineering teams requires a mix of independent effort and collaboration. Motivated by our mission, we're all racing toward our connected operations vision, and we intend to win-together.
In this role, you will: 

Drive the Safety AI Platform Architecture

  • Own the technical direction for Samsara's on-device and cloud safety AI systems - making architectural decisions about what runs on constrained edge hardware vs. cloud, how models are packaged and deployed across more than 2M dashcams, and how the data flywheel is built to drive continuous improvement.
  • Lead the transition from individual model deployments to a coherent, system-level platform - one that fuses camera, IMU, GPS, and vehicle telemetry data to detect, interpret, and surface safety events with high precision and low latency.
  • Evaluate and integrate emerging AI capabilities (e.g. VLMs, foundation models, multi-task architectures) and determine when they are ready to move from research to production at fleet scale.

Ship Safety AI Features with Measurable Customer Impact

  • Partner with product and full-stack teams to define, scope, and ship safety features that reduce accident rates, improve driver coaching outcomes, and deliver quantifiable value to fleet operators.
  • Lead experiment design, offline/online evaluation, and go/no-go decisions for new ML-powered features - grounding every launch in real safety metrics, not just model performance benchmarks.
  • Own the full model lifecycle: data curation, training, evaluation (shadow and online experiments), deployment, monitoring, and iteration on a continuous improvement loop.

Build and Lead a High-Performing Team

  • Lead and grow a team of applied scientists and engineers across CV, sensor fusion, edge ML,  maintaining a culture of high technical standards and strong delivery.
  • Hire, coach, and develop senior ICs and early-career talent; create growth paths across both technical and leadership tracks.
  • Operate as a tech lead manager: setting the architectural direction while staying hands-on enough to review modeling approaches, unblock technical decisions, and maintain credibility with your most senior engineers.
  • Champion, role model, and embed Samsara's cultural principles (Focus on Customer Success, Build for the Long Term, Adopt a Growth Mindset, Be Inclusive, Win as a Team) as we scale globally and across new offices.

Minimum requirements for the role:

  • 8+ years of experience in applied ML or computer vision, with a strong track record of shipping models to production in real-world systems.
  • 5+ years leading technical teams of scientists and engineers, including senior ICs - with demonstrated ability to set technical direction, not just manage delivery.
  • Experience shipping CV and/or sensor fusion systems that fuse multiple data streams (e.g. camera, IMU, GPS, telemetry) in production environments.
  • Demonstrated ability to navigate science-engineering tension: you know when to hold the platform line and when to adapt for research velocity, and you can communicate trade-offs clearly to both sides.
  • Experience building and deploying large-scale machine learning systems with feedback loops for continuous improvement.

An ideal candidate also has:

  • Customer orientation and intensive focus on improving the customer experience.
  • Experience building, deploying, and optimizing AI systems than span edge devices and the cloud.
  • Experience with VLMs, foundation models, or multi-task architectures in production settings - particularly in constrained compute environments.
  • Background in AV, robotics, or fleet telematics domains where safety and reliability are first-class requirements.
  • Contributions to or deep familiarity with the academic research literature in CV and perception and the ability to evaluate what's worth bringing in from research and what isn't.
  • MS or PhD in Computer Science, Electrical Engineering, or a related technical field.