2

Remote Image Analysis Jobs in Washington, DC (NOW HIRING)

Analyze: * EO collection capabilities * Sensor phenomenology * Image formation processes * Exploit ... Remote sensing phenomenology * Image formation processes * Exploitation products and methodologies

... analysis to make recommendations that improve data curation and development in support of Machine ... Remote sensing phenomenology * Image formation processes * Exploitation products and methodologies

Senior Software Engineer

Highland Beach, MD · On-site +1

$121K - $159K/yr

As a Software Engineer - Senior Level at Boeing Intelligence & Analytics (BI&A), you will be ... 2D and 3D image displays Telework/Remote Availability: Telework/Remote work currently not ...

Senior Software Engineer

Highland Beach, MD · On-site +1

$121K - $159K/yr

As a Software Engineer - Senior Level at Boeing Intelligence & Analytics (BI&A), you will be ... 2D and 3D image displays Telework/Remote Availability: Telework/Remote work currently not ...

Software Engineer, Senior

Herndon, VA · On-site +1

$126K - $166K/yr

Background in signal processing, image processing, or remote sensing data workflows. * Experience with simulation, modeling, or mission analysis software in a defense or intelligence context.

Software Engineer, Senior

Herndon, VA · On-site +1

$126K - $166K/yr

Background in signal processing, image processing, or remote sensing data workflows. * Experience with simulation, modeling, or mission analysis software in a defense or intelligence context.

Analyze: * EO collection capabilities * Sensor phenomenology * Image formation processes * Exploit ... Remote sensing phenomenology * Image formation processes * Exploitation products and methodologies

Showing results 21-40

Remote Image Analysis information

See Washington, DC salary details

$17

$31

$47

How much do remote image analysis jobs pay per hour?

As of Sep 2, 2026, the average hourly pay for remote image analysis in Washington, DC is $31.64, according to ZipRecruiter salary data. Most workers in this role earn between $27.21 and $33.75 per hour, depending on experience, location, and employer.

What is remote image analysis?

Remote image analysis is the process of examining and interpreting images from a distance, often using specialized software and cloud-based platforms. Professionals in this field analyze images from sources such as satellites, drones, medical imaging devices, or security cameras to extract useful information without being physically present. This approach allows for efficient data processing, real-time collaboration, and accessibility from anywhere with an internet connection. Remote image analysis is commonly used in industries like healthcare, agriculture, environmental monitoring, and security.

What are some common challenges faced in a remote image analysis role, and how can they be addressed?

One common challenge in remote image analysis is maintaining effective communication with team members and project stakeholders, as collaboration often relies on digital platforms. Additionally, handling large datasets and ensuring secure data transfer can be technically demanding in a remote setup. To address these issues, professionals should become proficient with collaborative tools (such as Slack, Zoom, or project management software) and follow best practices for data security and version control. Regular check-ins and clear documentation also help ensure smooth workflow and minimize misunderstandings.

What are the key skills and qualifications needed to thrive as a remote image analyst, and why are they important?

To thrive as a Remote Image Analyst, you need a solid background in image processing, pattern recognition, and a relevant degree in fields like computer science or engineering. Familiarity with software such as MATLAB, Python (with libraries like OpenCV), and GIS platforms is typically required, along with certifications in data analysis or remote sensing. Attention to detail, analytical thinking, and effective communication are essential soft skills for interpreting images and sharing findings with stakeholders. These skills ensure accurate data interpretation, support decision-making, and enable seamless collaboration in remote work environments.

What is the difference between Remote Image Analysis vs Remote Data Annotation?

AspectRemote Image AnalysisRemote Data Annotation
Primary FocusInterpreting and analyzing images to extract meaningful informationLabeling and tagging data to prepare datasets for machine learning
Required SkillsImage recognition, pattern analysis, attention to detailData labeling, understanding of annotation tools, accuracy
Work EnvironmentRemote, often flexible hours, tech-focusedRemote, collaborative platforms, tech and communication skills
Industry UsageHealthcare, security, autonomous vehiclesAI, machine learning, computer vision projects

Remote Image Analysis involves interpreting images to extract insights, often requiring specialized visual skills. Remote Data Annotation focuses on labeling data to train AI models, emphasizing accuracy and consistency. Both roles are remote, industry-specific, and essential for AI development, but they differ in their core tasks and skill sets.

What are the most commonly searched types of Image Analysis jobs in Washington, DC?

The most popular types of Image Analysis jobs in Washington, DC are:

What are popular job titles related to Remote Image Analysis jobs in Washington, DC?

For Remote Image Analysis jobs in Washington, DC, the most frequently searched job titles are:

What job categories do people searching Remote Image Analysis jobs in Washington, DC look for?

The top searched job categories for Remote Image Analysis jobs in Washington, DC are:

Advanced Electro-Optical (EO) Systems Engineer

Stratos Solutions

Chantilly, VA • Remote

$132K - $171K/yr

Full-time

Posted 29 days ago


Job description

Advanced Electro-Optical (EO) Systems Engineer

Target Labor Category: Intermediate, Senior, Subject Matter Expert (SME)
Position Location: Chantilly, VA (Customer Site)
Clearance Required: TS/SCI with Polygraph

Position Overview

Stratos Solutions has an opportunity for an Advanced Electro-Optical (EO) Systems Engineer to support an Intelligence Community (IC) Space customer within the GEOINT Ground System Program Office (G2SPO) in Northern Virginia. The selected candidate will provide technical expertise supporting the development, acquisition, integration, and operational employment of advanced Electro-Optical (EO) remote sensing systems and associated GEOINT ground processing capabilities.

This role supports the Government in evaluating next-generation EO technologies, assessing system performance, advising on mission architectures, and ensuring new capabilities satisfy operational mission requirements. The successful candidate will work closely with government engineers, acquisition teams, system developers, mission operators, and industry partners to provide technical leadership across the lifecycle of advanced EO systems-from concept development through operational deployment.

The ideal candidate possesses a deep understanding of EO imaging systems, remote sensing physics, image formation, collection phenomenology, calibration techniques, and GEOINT exploitation workflows. Experience supporting National Reconnaissance Office (NRO), National Geospatial-Intelligence Agency (NGA), or Intelligence Community space programs is highly desirable.

If you are passionate about advancing the nation's premier Electro-Optical GEOINT capabilities and enabling mission success through innovative engineering, we encourage you to apply.

About Stratos Solutions

Stratos Solutions delivers mission-focused engineering, acquisition, and operations support to the Intelligence Community and national security space enterprise. As an employee-owned company, Stratos combines technical excellence, operational agility, and a deep commitment to customer mission success. Our teams work at the forefront of space and intelligence innovation supporting programs critical to national security.

Responsibilities

The Advanced Electro-Optical Systems Engineer will provide technical expertise supporting the engineering, acquisition, integration, and operational employment of advanced EO collection systems and GEOINT processing capabilities.

Responsibilities include, but are not limited to:

Electro-Optical Systems Engineering

  • Provide technical expertise supporting advanced Electro-Optical (EO) collection systems, payloads, and associated ground processing architectures.
  • Evaluate EO system performance, sensor capabilities, and mission effectiveness across the system lifecycle.
  • Support systems engineering activities including requirements development, architecture analysis, design reviews, integration, testing, and operational transition.
  • Assess technical approaches and engineering trade studies supporting future EO capability development.
  • Review technical documentation, interface specifications, architecture products, and engineering baselines.

EO Phenomenology & Remote Sensing

  • Apply expertise in EO phenomenology, image formation, radiometry, optics, detector technologies, and sensor physics.
  • Evaluate the effects of atmospheric conditions, illumination geometry, environmental factors, and collection geometry on image quality and mission performance.
  • Analyze imaging performance metrics including spatial resolution, signal-to-noise ratio (SNR), modulation transfer function (MTF), dynamic range, and radiometric performance.
  • Support calibration, characterization, and validation of EO sensor performance.
  • Advise Government stakeholders on the operational capabilities and limitations of EO collection systems.

GEOINT Mission Integration

  • Support integration of EO collection capabilities with GEOINT processing, exploitation, and dissemination (PED) architectures.
  • Evaluate interoperability between collection systems, processing baselines, exploitation tools, and enterprise GEOINT services.
  • Support mission planning, collection optimization, and operational employment of EO capabilities.
  • Collaborate with mission operators to ensure technical solutions support operational mission requirements.
  • Assess impacts of system changes on downstream GEOINT exploitation workflows.

Technical Assessments & Program Support

  • Conduct independent technical assessments of contractor designs, engineering solutions, and system performance.
  • Participate in technical interchange meetings, engineering reviews, architecture review boards, and acquisition milestone activities.
  • Identify technical risks and provide recommendations to improve system performance, reliability, maintainability, and mission effectiveness.
  • Develop technical reports, white papers, engineering assessments, and executive briefings supporting Government decision-making.
  • Support technology roadmaps and modernization planning for future EO capabilities.

Emerging Technologies & Innovation

  • Evaluate emerging EO sensor technologies, advanced focal plane arrays, computational imaging techniques, onboard processing, AI/ML-enabled exploitation, and cloud-based GEOINT architectures.
  • Assess opportunities to improve collection efficiency, image quality, automation, and mission responsiveness.
  • Maintain awareness of advances in commercial remote sensing, imaging technologies, and Intelligence Community GEOINT capabilities.
  • Provide technical recommendations supporting future capability investments and mission modernization.

Required Qualifications

Education & Clearance

  • Bachelor's Degree in Optical Engineering, Electrical Engineering, Physics, Aerospace Engineering, Systems Engineering, Remote Sensing, Geospatial Science, Applied Mathematics, or a related technical discipline.
    (Relevant experience may substitute for degree requirements.)
  • Active TS/SCI with Polygraph.

Technical & Functional Skills

  • Experience supporting Electro-Optical (EO) remote sensing systems, imaging payloads, or GEOINT collection programs.
  • Strong understanding of EO phenomenology, optics, detector technologies, image formation, and remote sensing physics.
  • Experience supporting systems engineering activities across the system lifecycle.
  • Knowledge of GEOINT collection, processing, exploitation, and dissemination (PED) workflows.
  • Experience evaluating system performance, technical risks, and engineering trade studies.
  • Ability to analyze complex technical problems and develop practical engineering recommendations.
  • Strong written and verbal communication skills with experience briefing senior Government leadership and technical stakeholders.

Desired Skills / Qualifications

  • Experience supporting the National Reconnaissance Office (NRO), particularly GEOINT Ground System Program Office (G2SPO) activities.
  • Experience supporting the National Geospatial-Intelligence Agency (NGA) or other Intelligence Community GEOINT organizations.
  • Knowledge of advanced space-based EO imaging architectures and associated ground processing systems.
  • Experience with radiometric calibration, geometric calibration, sensor characterization, image quality analysis, or optical system performance evaluation.
  • Familiarity with image exploitation software, GEOINT processing baselines, and enterprise GEOINT architectures.
  • Experience supporting Electro-Optical payload integration, mission planning, or collection operations.
  • Knowledge of Synthetic Aperture Radar (SAR), multispectral, hyperspectral, or multi-INT integration concepts.
  • Experience supporting acquisition programs, Systems Engineering and Technical Assistance (SETA), or Government program offices.
  • Familiarity with Model-Based Systems Engineering (MBSE), requirements management tools, or digital engineering practices.
  • Advanced degree (M.S. or Ph.D.) in Optical Engineering, Physics, Remote Sensing, Electrical Engineering, or a related technical field is highly desirable.
  • INCOSE CSEP, PMP, or other relevant professional certifications are a plus.