Principal Engineer, Modeling & Controls Engineering
Carrier Global
- Location
- CAN01 Carrier Syracuse 6304 Carrier Parkway East Syracuse NY 13057 USA
- Work model
- On-Site
- Level
- Principal
- Posted
- 1d ago
About this role
About Carrier Carrier Global Corporation, global leader in intelligent climate and energy solutions, is committed to creating innovations that bring comfort, safety and sustainability to life. Through cutting-edge advancements in climate solutions such as temperature control, air quality and transportation, we improve lives, empower critical industries and ensure safe transport of food, lifesaving medicines and more. Since inventing modern air conditioning in 1902, we lead with purpose: enhancing the lives we live and the world we share. We continue to lead because of our world-class, inclusive workforce that puts the customer at the center of everything we do. For more information, visit corporate.carrier.com or follow on Carrier social media at @Carrier. We are seeking an accomplished, visionary, and results-oriented Principal Controls Engineer to provide technical leadership and drive the strategic direction of control systems development across carrier HVAC and refrigeration product portfolio. In this role, you will serve as a recognized technical authority, leading the architecture, development, and deployment of control solutions while influencing product strategy, technology roadmaps, and engineering best practices. This position offers the opportunity to engage with multiple business units and contribute to a diverse product portfolio. If you are passionate about solving complex technical challenges, leading high-impact programs, and influencing the future direction of advanced control systems, we would love to hear from you. This role is fully onsite. The selected candidate will work daily from one of the following primary locations: Syracuse, NY Kennesaw, GA Key Responsibilities Lead the development and adoption of common controls platforms to accelerate product development, improve technology reuse, and ensure consistent product quality across multiple product lines. Lead the development and delivery of robust, production-ready control solutions by ensuring compliance with customer and technical requirements, industry standards, and best practices. Drive project execution by setting clear technical goals, managing timelines, and coordinating teams. Mitigate risks, align stakeholders, and ensure on-time, high-quality delivery. Support system-level requirement definition and drive low-level control requirement decomposition. Provide technical leadership in the development of advanced control algorithms, including system identification, controllability, robustness, stability, optimization, and nonlinear control methodologies. Support the development and calibration of physics-based plant models. Utilize models for design exploration, control system analysis, verification, and validation. Develop & execute unit-tests & integration tests for control system. Lead laboratory and field validation activities, including hands-on testing in psychrometric laboratories, and analyze results to drive continuous improvements in plant models, control algorithms, and overall system performance. Apply best-in-class strategies to push testing further upstream in the development lifecycle (MIL/SIL/HIL) Drive strategic initiatives to improve organizational quality and efficiency through technology advancement and process improvement.
Required Qualifications
Master’s in Electrical, Control Systems, Mechanical, or Chemical Engineering 15+ years of advanced controls system experience.
Preferred Qualifications
PhD Proficient knowledge of controls engineering foundations, including feedback control, linear/nonlinear control, multivariable control, system identification, and constrained optimization and predictive control. Excellent communication skills and a proven track record of delivering results through effective teamwork. Experience with industrial control applications. Experience with vapor-compression cycles, including heat exchangers and turbomachinery compression technologies. Experience driving controls platforming