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Multi-GNSS Data Analyst

A40f480a 47ae 461b Bf11 Ceedb843d226 19000101 000001 · Greenbelt, MD, Lanham, MD, US, Lanham, MD · Remote · Active · $80,000–$105,000 / year · ADP Workforce Now Recruiting

Job facts

FieldValue
CompanyA40f480a 47ae 461b Bf11 Ceedb843d226 19000101 000001
TitleMulti-GNSS Data Analyst
Normalized title-
Department / team-
LocationGreenbelt, MD, United States
Work modelRemote / Remote
Employment typeFull Time
Salary$80,000–$105,000 / year
Statusactive
ATS providerADP Workforce Now Recruiting
Posted / first seen2026-06-04 / 2026-06-05
Changed / last seen2026-06-06 / 2026-06-06

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Linked records

CompanyA40f480a 47ae 461b Bf11 Ceedb843d226 19000101 000001
Sourcead574276-095d-4cb6-aae1-ced2c1bb369c
ATS providerADP Workforce Now Recruiting

Description

Science Systems and Applications, Inc (SSAI) is seeking an experienced and skilled Multi-GNSS Data Analyst . The successful candidate will be responsible for processing, analyzing, and validating Multi-GNSS data in support of precision positioning, navigation, and timing (PNT) applications. This role requires deep technical expertise in GNSS measurement processing, error modeling, and geospatial data analysis, with a strong focus on delivering high-accuracy positioning solutions for scientific and engineering applications. Key Responsibilities: GNSS Data Processing & Analysis Process raw Multi-GNSS observations using precise point positioning (PPP), Post-Processed Kinematic (PPK), reduced dynamic, differential, undifferenced, and relative positioning techniques Perform static, kinematic, and reduced dynamic Multi-GNSS data processing for ground-based, spaceborne, and airborne platform precise positioning and clock solutions including GNSS space vehicles, ground stations, and LEO geodetic satellites Perform Multi-GNSS data processing in support of Earth Orientation Parameter (EOP) and reference frame solutions Application and improvement of corrections for tropospheric delay, ionospheric delay, multipath, and other systematic error sources Conduct integer ambiguity resolution to achieve centimeter-level positioning accuracy Quality Assessment & Validation Assess Multi-GNSS solution quality using statistical metrics, residual analysis, and independent validation datasets Identify and mitigate systematic errors, outliers, and data gaps in Multi-GNSS observations Compare Multi-GNSS-derived positions against ground truth and independent reference datasets Document data quality issues and develop strategies for improvement Integration & Geolocation Integrate GNSS and IMU/INS data for precise platform positioning and attitude determination Support geolocation of remote sensing data including laser altimeter measurements Software & Tool Development Develop, maintain, and improve GNSS data processing scripts and workflows using PERL, Fortran, C, Python, and similar languages Work with Multi-GNSS processing software such as GIPSY-OASIS, BERNESE, and GEODYN Automate data processing pipelines to handle large volumes of Multi-GNSS observations efficiently Contribute to the development of data processing documentation and standard operating procedures Collaboration & Communication Collaborate with multidisciplinary teams including scientists, engineers, and project managers Present technical results and findings to both technical and non-technical audiences Contribute to technical reports, peer-reviewed publications, and conference presentations Participate in field campaigns and provide on-site GNSS data collection support as needed Required Qualifications: Bachelor’s (B.S.) degree in Aerospace Engineering, Geodesy, Geomatics, Electrical Engineering, Physics, Computer Science, or a related field. Minimum 5 years of experience in GNSS data processing and analysis. Strong understanding of GNSS measurement models, error sources, and correction techniques. Proficiency in at least one GNSS processing software package (e.g., GIPSY, BERNESE). Experience with kinematic GNSS processing for spaceborne and airborne or mobile platforms. Proficiency in Python, MATLAB, or C++ for data analysis and automation. Familiarity with geodetic reference frames, coordinate systems, and datum transformations. Strong analytical and problem-solving skills. Excellent written and verbal communication skills. U.S. Citizenship or Permanent Residency required. Desired Qualifications Master's or Ph.D. in Geodesy, Geomatics, Navigation, Aerospace Engineering or a closely related field. Experience with kinematic and reduced dynamic Precise Orbit Determination (POD) for spaceborne GNSS receivers. Experience with precise positioning and clock solutions for GNSS space vehicles and ground stations. Experience with Post-Processed Kinematic (PPK), Precise Point Positioning (PPP). Experience with integer ambiguity resolution techniques. Experience supporting airborne or spaceborne remote sensing missions. Knowledge of satellite gravimetry and laser altimetry. Familiarity with IMU/INS integration and tightly/loosely coupled GNSS/INS processing. Active participation in the geodetic or GNSS research community (publications, conferences). EEO/AA Veterans and Individuals with Disabilities Physical Requirements: While performing the duties of this job, the employee is regularly required to stand, walk, and use hands to touch, handle or feel objects, tools or controls. The employee frequently is required to talk and hear and occasionally required to reach with hands and arms and stoop, kneel, crouch, or crawl. Must regularly lift and/or move up to 10 pounds, and occasionally lift and/or move up to 25 pounds. Specific vision abilities required by this job include close vision, peripheral vision, depth perception and the ability to adjust focus

Full job record

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Last Seen At2026-06-06 13:25:27Z
Last Checked At2026-06-06 13:25:27Z
Last Changed At2026-06-06 13:25:27Z
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This role requires deep technical expertise in GNSS measurement processing, error modeling, and geospatial data analysis, with a strong focus on delivering high-accuracy positioning solutions for scientific and engineering applications.</p><p><strong>Key Responsibilities:</strong></p><p style=\"margin-left: 20px;\" data-pasted=\"true\"><u>GNSS Data Processing &amp; Analysis</u></p><ul type=\"disc\"><li style=\"margin-left:0in;\">Process raw Multi-GNSS observations using precise point positioning (PPP), Post-Processed Kinematic (PPK), reduced dynamic, differential, undifferenced, and relative positioning techniques</li><li style=\"margin-left:0in;\">Perform static, kinematic, and reduced dynamic Multi-GNSS data processing for ground-based, spaceborne, and airborne platform precise positioning and clock solutions including GNSS space vehicles, ground stations, and LEO geodetic satellites</li><li style=\"margin-left:0in;\">Perform Multi-GNSS data processing in support of Earth Orientation Parameter (EOP) and reference frame solutions</li><li style=\"margin-left:0in;\">Application and improvement of corrections for tropospheric delay, ionospheric delay, multipath, and other systematic error sources</li><li style=\"margin-left:0in;\">Conduct integer ambiguity resolution to achieve centimeter-level positioning accuracy</li></ul><p style=\"margin-left: 20px;\"><u>Quality Assessment &amp; Validation</u></p><ul type=\"disc\"><li style=\"margin-left:0in;\">Assess Multi-GNSS solution quality using statistical metrics, residual analysis, and independent validation datasets</li><li style=\"margin-left:0in;\">Identify and mitigate systematic errors, outliers, and data gaps in Multi-GNSS observations</li><li style=\"margin-left:0in;\">Compare Multi-GNSS-derived positions against ground truth and independent reference datasets</li><li style=\"margin-left:0in;\">Document data quality issues and develop strategies for improvement</li></ul><p style=\"margin-left: 20px;\"><u>Integration &amp; Geolocation</u></p><ul type=\"disc\"><li style=\"margin-left:0in;\">Integrate GNSS and IMU/INS data for precise platform positioning and attitude determination</li><li style=\"margin-left:0in;\">Support geolocation of remote sensing data including laser altimeter measurements</li></ul><p style=\"margin-left: 20px;\"><u>Software &amp; Tool Development</u></p><ul type=\"disc\"><li style=\"margin-left:0in;\">Develop, maintain, and improve GNSS data processing scripts and workflows using PERL, Fortran, C, Python, and similar languages</li><li style=\"margin-left:0in;\">Work with Multi-GNSS processing software such as GIPSY-OASIS, BERNESE, and GEODYN</li><li style=\"margin-left:0in;\">Automate data processing pipelines to handle large volumes of Multi-GNSS observations efficiently</li><li style=\"margin-left:0in;\">Contribute to the development of data processing documentation and standard operating procedures</li></ul><p style=\"margin-left: 20px;\"><u>Collaboration &amp; Communication</u></p><ul type=\"disc\"><li style=\"margin-left:0in;\">Collaborate with multidisciplinary teams including scientists, engineers, and project managers</li><li style=\"margin-left:0in;\">Present technical results and findings to both technical and non-technical audiences</li><li style=\"margin-left:0in;\">Contribute to technical reports, peer-reviewed publications, and conference presentations</li><li style=\"margin-left:0in;\">Participate in field campaigns and provide on-site GNSS data collection support as needed</li></ul><p><strong>Required Qualifications:</strong></p><ul type=\"disc\" data-pasted=\"true\"><li style=\"margin-left:0in;\">Bachelor&rsquo;s (B.S.) degree in Aerospace Engineering, Geodesy, Geomatics, Electrical Engineering, Physics, Computer Science, or a related field.</li><li style=\"margin-left:0in;\">Minimum 5 years of experience in GNSS data processing and analysis.</li><li style=\"margin-left:0in;\">Strong understanding of GNSS measurement models, error sources, and correction techniques.</li><li style=\"margin-left:0in;\">Proficiency in at least one GNSS processing software package (e.g., GIPSY, BERNESE).</li><li style=\"margin-left:0in;\">Experience with kinematic GNSS processing for spaceborne and airborne or mobile platforms.</li><li style=\"margin-left:0in;\">Proficiency in Python, MATLAB, or C++ for data analysis and automation.</li><li style=\"margin-left:0in;\">Familiarity with geodetic reference frames, coordinate systems, and datum transformations.</li><li style=\"margin-left:0in;\">Strong analytical and problem-solving skills.</li><li style=\"margin-left:0in;\">Excellent written and verbal communication skills.</li><li style=\"margin-left:0in;\">U.S. Citizenship or Permanent Residency required.</li></ul><p><strong>Desired Qualifications</strong></p><ul type=\"disc\" data-pasted=\"true\"><li style=\"margin-left:0in;\">Master&#39;s or Ph.D. in Geodesy, Geomatics, Navigation, Aerospace Engineering or a closely related field.</li><li style=\"margin-left: 0in;\">Experience with kinematic and reduced dynamic Precise Orbit Determination (POD) for spaceborne GNSS receivers.</li><li style=\"margin-left: 0in;\">Experience with precise positioning and clock solutions for GNSS space vehicles and ground stations.</li><li style=\"margin-left: 0in;\">Experience with Post-Processed Kinematic (PPK), Precise Point Positioning (PPP).</li><li style=\"margin-left: 0in;\">Experience with integer ambiguity resolution techniques.</li><li style=\"margin-left: 0in;\">Experience supporting airborne or spaceborne remote sensing missions.</li><li style=\"margin-left: 0in;\">Knowledge of satellite gravimetry and laser altimetry.</li><li style=\"margin-left: 0in;\">Familiarity with IMU/INS integration and tightly/loosely coupled GNSS/INS processing.</li><li style=\"margin-left: 0in;\">Active participation in the geodetic or GNSS research community (publications, conferences).</li></ul><p><br></p><p><em style=\"box-sizing: border-box; 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outline: none; --tw-shadow: 0 0 #0000; --tw-ring-inset: var(--tw-empty,/*!*/ /*!*/); --tw-ring-offset-width: 0px; --tw-ring-offset-color: #fff; --tw-ring-color: rgba(59,130,246,.5); --tw-ring-offset-shadow: 0 0 #0000; --tw-ring-shadow: 0 0 #0000; font-size: 11px; line-height: 12.65px; font-family: \"Segoe UI\", sans-serif;'>Physical Requirements:</span></em></strong><em style=\"box-sizing: border-box; outline: none; --tw-shadow: 0 0 #0000; --tw-ring-inset: var(--tw-empty,/*!*/ /*!*/); --tw-ring-offset-width: 0px; --tw-ring-offset-color: #fff; --tw-ring-color: rgba(59,130,246,.5); --tw-ring-offset-shadow: 0 0 #0000; --tw-ring-shadow: 0 0 #0000; color: rgb(38, 35, 33); font-family: Calibri, sans-serif; font-size: 15px; font-variant-ligatures: normal; font-variant-caps: normal; font-weight: 400; letter-spacing: normal; orphans: 2; text-align: start; text-indent: 0px; text-transform: none; widows: 2; word-spacing: 0px; -webkit-text-stroke-width: 0px; white-space: normal; text-decoration-thickness: initial; text-decoration-style: initial; text-decoration-color: initial;\"><span style='box-sizing: border-box; outline: none; --tw-shadow: 0 0 #0000; --tw-ring-inset: var(--tw-empty,/*!*/ /*!*/); --tw-ring-offset-width: 0px; --tw-ring-offset-color: #fff; --tw-ring-color: rgba(59,130,246,.5); --tw-ring-offset-shadow: 0 0 #0000; --tw-ring-shadow: 0 0 #0000; font-size: 11px; line-height: 12.65px; font-family: \"Segoe UI\", sans-serif;'> While performing the duties of this job, the employee is regularly required to stand, walk, and use hands to touch, handle or feel objects, tools or controls. The employee frequently is required to talk and hear and occasionally required to reach with hands and arms and stoop, kneel, crouch, or crawl. Must regularly lift and/or move up to 10 pounds, and occasionally lift and/or move up to 25 pounds. Specific vision abilities required by this job include close vision, peripheral vision, depth perception and the ability to adjust focus</span></em></p><p><br></p></div></div></div></div></div></div></div></div></div>\n",
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