Senior Applied Scientist

Amazon Amazon · Big Tech · N.reading, MA · Research Science

Senior Applied Scientist role focused on developing advanced robotics systems that integrate AI, control systems, and mechanical design for automation at Amazon's scale. The role involves research and implementation of deep learning and LLMs for robotic dexterous manipulation, locomotion, and human-robot interaction, bridging theoretical advancements with practical applications.

What you'd actually do

  1. Design and implement whole body control methods for balance, locomotion, and dexterous manipulation
  2. Utilize state-of-the-art in methods in learned and model-based control
  3. Create robust and safe behaviors for different terrains and tasks
  4. Implement real-time controllers with stability guarantees
  5. Collaborate effectively with multi-disciplinary teams to co-design hardware and algorithms for loco-manipulation

Skills

Required

  • PhD, or Master's degree and 4+ years of applied research experience
  • Experience programming in Java, C++, Python or related language
  • Experience with imitation learning and reinforcement learning for whole-body control
  • Experience with methods such as hierarchical quadratic programming and model-predictive control
  • Experience with simulation environments such as IsaacLab, Mujoco, Drake, etc.
  • Experience with developing and deploying code for real-time controllers
  • Experience in state estimation from multiple sensor modalities

Nice to have

  • Experience with modeling tools such as R, scikit-learn, Spark MLLib, MxNet, Tensorflow, numpy, scipy etc.
  • Experience with large scale distributed systems such as Hadoop, Spark etc.
  • Experience with low-level joint torque/impedance control
  • Experience with teleoperation systems
  • Experience with robotics frameworks for fast prototyping (Matlab, ROS, etc.)

What the JD emphasized

  • advanced robotics
  • deep learning
  • large language models
  • reinforcement learning
  • whole body control

Other signals

  • advanced robotics
  • deep learning
  • large language models
  • reinforcement learning
  • whole body control