Localization Intern

Posted 10 Hours Ago
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Hiring Remotely in United States
Remote
Internship
Greentech • Transportation
The Role
The Localization Intern will develop algorithms for localization and mapping of Glydcars, conduct testing and data analysis, and improve safety-critical components.
Summary Generated by Built In

Who we are:

Glydways is reimagining what public transit can be. We believe that mobility is the gateway to opportunity—connecting people to housing, education, employment, commerce, and care. By making transportation more accessible, affordable, and sustainable, we empower communities to thrive and unlock economic and social prosperity.

Our mission is to revolutionize transit with a solution that delivers high capacity, exceptional user experiences, unmatched affordability, and minimal environmental impact.

The Glydways system is a groundbreaking network of carbon-neutral, interconnected transit pathways powered by standardized autonomous vehicles on dedicated roadways. Operating 24/7 with on-demand access, it offers personalized and efficient mobility—without the burden of heavy upfront infrastructure costs or ongoing taxpayer subsidies.

With Glydways, we’re building more than a transportation system; we’re creating a future where everyone, everywhere, has the freedom to move.

Meet the team:

You will join a team that is responsible for developing software for localization, calibration, and mapping of robotic ground vehicles, which we lovingly refer to as Glydcars. The team is composed of team members with strong backgrounds in sensor fusion (LIDAR, RADAR, vision processing, UWB radios, inertial sensors, etc), SLAM (Simultaneous Localization and Mapping), optimization, filtering (Kalman filters, factor graphs, etc) and tracking. Members support development and maintenance of core components of a sophisticated autonomy stack for Glydcars, which operate in a variety of environments including GPS-denied areas. Team members contribute by writing C++ onboard software, peer-reviewing each other’s contributions, developing unit, subsystem, and end-to-end tests, and conducting data analysis (often using Python) in a common software repository. 


Roles & Responsibilities:

  • Develop and enhance state-of-the-art algorithms for localization and mapping from LIDAR/RADAR/UWB Range Sensors/IMU/Encoders, etc.
  • Improve upon existing integrity monitoring capabilities to provide a robust, safe localization system for passenger rides
  • Work closely with teammates by conducting and receiving code reviews and demonstrating attention to detail.
  • Conduct simulation (including developing and passing unit tests, subsystem tests, and end-to-end scenarios) and live testing of the autonomy stack.
  • Perform detailed analysis of algorithm and system performance by replaying logs of simulated and live testing and augmenting analysis capabilities.
  • Participate in the design of safety-critical software components of the Glydcar and wayside systems.
  • Deliver answers and results to tough problems including providing cm-level accurate localization and mapping in GPS-denied environments.

Knowledge, Skills and Abilities:

  • Masters / PhD graduating within 12 months of internship completion, in Robotics, Computer Science, Electrical Engineering, Aerospace, or a related field. Strong undergraduate seniors with relevant research experience will also be considered.
  • C++ Programming Skills: experience with modern variants of C++ (e.g., C++17 or later), familiarity with a C++ unit testing framework such as gtest, and exposure to build systems such as CMake and/or Bazel.
  • Coursework or hands-on experience in one or more of the following:
    • State estimation, Kalman filtering, or factor graph optimization
    • SLAM (Simultaneous Localization and Mapping)
    • Point cloud processing or LiDAR data analysis
    • Sensor fusion or multi-sensor calibration
    • Rigid body transforms, probability theory, and linear algebra
  • Comfort working in a Linux environment with version control (git) and collaborative development workflows.
  • Strong problem-solving skills and ability to work independently while communicating progress clearly.
  • Ability to communicate technical ideas effectively, both in writing and in discussions.

Bonus Qualifications

  • Experience with robotics middleware (ROS, ROS2, LCM, or similar).
  • Familiarity with build systems such as Bazel or CMake.
  • Experience with simulation frameworks for autonomous vehicles or robotics.
  • Prior hands-on experience with LiDAR, RADAR, IMU, or GPS sensors.

Glydways provides equal employment opportunities to all employees and applicants for employment and prohibits discrimination and harassment of any type without regard to race, color, religion, age, sex, national origin, disability status, genetics, protected veteran status, sexual orientation, gender identity or expression, or any other characteristic protected by federal, state or local laws.

Top Skills

Bazel
C++
Cmake
Git
Gtest
Imu
Lidar
Linux
Python
Radar
Ros
Ros2
Slam
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The Company
HQ: San Francisco, California
86 Employees
Year Founded: 2016

What We Do

Glydways, Inc. is an American transportation technology and clean energy company based in South San Francisco, CA. The company specializes in the design, manufacture, installation and operation of affordable autonomous transportation for low, medium and extremely high capacity needs. Founded in 2016 by engineer and entrepreneur Mark Seeger, the company was started with the goal of providing affordable mobility for communities across the world. This goal is founded in the belief that access to affordable housing, employment, education and care lead to economic and social prosperity, and the key to this equity is mobility for as many people as possible. Lead by Gokul Hemmady who serves as CEO, the company’s core objectives are to provide a 24/7 mobility service solution that is environmentally net-negative in terms of greenhouse gas production (GHG), and, inherently profitable. GHG-negative is achieved through the invention and use of power-efficient technologies to reduce the watt-hours-per-person-per-unit-distance traveled, and, photovoltaics embedded into the infrastructure. Economic sustainability is achieved by designing for operational costs that are inherently lower than revenue collected when selling a ride. The key comes from decoupling the unit-costs from the utilization of the system, something that is not possible with existing public/mass transportation systems. By being financially sustainable, Glydways relieves municipalities of the vast annual subsidies required to operate existing solutions, which are inherently unprofitable and thereby a fiscal burden to public budgets. Further, the Glydways business model allows for private capitalization of entire systems. Glydways provides the highest capacity, at the lowest cost, with the best user experience, and the lowest greenhouse gas footprint of any mobility solution, providing a personal, on-demand, and point-to-point journey with no stops between origin and destination

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