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Research Project Manager - Kumar Lab - Penn Engineering
Job in
Philadelphia, Philadelphia County, Pennsylvania, 19133, USA
Listed on 2026-03-04
Listing for:
University of Pennsylvania
Full Time
position Listed on 2026-03-04
Job specializations:
-
Research/Development
Robotics, Research Scientist -
Engineering
Robotics, Research Scientist
Job Description & How to Apply Below
The University of Pennsylvania, the largest private employer in Philadelphia, is a world-renowned leader in education, research, and innovation. This historic, Ivy League school consistently ranks among the top 10 universities in the annual U.S. News & World Report survey. Penn has 12 highly-regarded schools that provide opportunities for undergraduate, graduate and continuing education, all influenced by Penn's distinctive interdisciplinary approach to scholarship and learning.
As an employer Penn has been ranked nationally on many occasions with the most recent award from Forbes who named Penn one of America's Best Large Employers in 2023.
Penn offers a unique working environment within the city of Philadelphia. The University is situated on a beautiful urban campus, with easy access to a range of educational, cultural, and recreational activities. With its historical significance and landmarks, lively cultural offerings, and wide variety of atmospheres, Philadelphia is the perfect place to call home for work and play.
The University offers a competitive benefits package that includes excellent healthcare and tuition benefits for employees and their families, generous retirement benefits, a wide variety of professional development opportunities, supportive work and family benefits, a wealth of health and wellness programs and resources, and much more.
Posted Job Title
Research Project Manager - Kumar Lab - Penn Engineering
Job Profile Title
Manager Research Project A
Job Description Summary
The Research Project Manager in the Kumar Lab in Penn Engineering will conceptualize and develop novel robotics research projects in the field of metric-semantic mapping, semantics-driven active exploration, and foundation models-aided intelligent decision systems, with an additional objective of translating these techniques to further augment agriculture and forestry robotics research. Deliver novel research as publishable research articles and also help write research proposals and reports.
Supervise, educate, and support students in projects and help coordinate workflows. Assure compliance with applicable laws, regulations, policies, and procedures.
Job Description
Job Responsibilities
+ Conceptualize and develop research projects for the Internet of Things for Precision Agriculture (IoT4AG) research grant Develop novel semantic mapping algorithms in the field of agricultural and forestry robotics to promote crop yield and silviculture. Deploy algorithms on board robot platforms and hence support robotics field experiments in orchards and forests. Lead bi-weekly research update meetings to discuss ongoing project progress and workshop new ideas.
Deliver results in the form of a publishable research article.
+ Contribute to the development of a robust autonomous multi-robot mapping and planning stack. Investigate current limitations in intelligent autonomous mapping and planning and subsequently augment the stack with improved capabilities such as robust autonomous semantic exploration. Test new capabilities on board robots platforms and conduct field experiments to verify success. Investigate the latest foundation models in robotics literature and implement suitable algorithms to augment the current stack.
Help write research articles and reports on novel findings.
+ Contribute to the development and maintenance of the lab's infrastructure, including robot platforms and the design of simulators for experiments
+ Participate in the implementation, maintenance, code refactoring, and open sourcing of the lab's code bases
Qualifications
Master's Degree in optimization and control theory or highly related topics and 1 - 2 years of related experience or an equivalent combination of education and experience. Computer scientist or engineer who is interested in creating/developing a Unity-based simulation environment that will allow realistic simulations of multiple full-stack aerial and ground robots including 3-D geometry, physics and sensor data. The job requires basic understanding of robot control techniques, dockerization mechanisms, and scripting.
Experience with ROS, Python, C++,…
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