The Ford Robotics Building has completed and opened on the University of Michigan (U-M) campus. The $75 million project represents a singular new home for the university’s relationship with Ford and acts as a showcase for robotics research, cross disciplinary collaboration, and innovative industry/education collaboration.
Located on the University of Michigan North Campus, the building anchors the west end of a Michigan Avenue mobility testbed that begins in Detroits Corktown neighborhood and runs through Dearborn to Ann Arbor. The four-story, 134,000-sf project is an interdisciplinary center for mathematics, engineering, and computer programming faculty and researchers. The facility will be home to researchers that were previously spread across 23 separate buildings and is also the first robotics facility to co-locate an industry team (Ford’s mobility research center) with a university’s robotics leadership.
HED, in an effort to reflect a robotics program incorporates both theory and making, designed the building to appear both extroverted and enclosed simultaneously. From the outside, the most striking feature is the glass-clad facade that curves along Hayward Street. Composed of large bands of fritted glass with 30-inch-deep sunshades spaced 42 inches apart, the south-oriented glass wall allows diffused daylight deep into the building interior. The facade also allows visitors to see the activities occurring within.
Upon entry, visitors arrive within a four-story atrium defined on one side by the curved smooth-facing glass wall and balconies for the top three floors. The atrium is designed for a wide variety of uses and special events with a cafe, large-scale video screen, and a sophisticated sound system. The atrium is heated through displacement ventilation. Researchers all enter the labs via a shared team collaboration space, ensuring chance encounters, interaction, and collaboration between them.
HED designed the Ford Robotics Building to promote proximity and spontaneous interaction between students, faculty, researchers, and visiting industry professionals. The building includes the new hub of the U-M Robotics Institute on the first three floors and Ford’s robotic and mobility research lab on the fourth floor.
The custom U-M research labs are designed for robots that fly, walk, roll, and augment the human body. Multiple labs are incorporated within the building, including the Ronald D. And Regina C. McNeil Walking Robotics Laboratory for developing and testing legged robots. This specific lab has an in-ground treadmill that can hit 31 mph and a 20% grade, as well as carry obstacles to test walking robots that could aid in disaster relief and lead to better prosthetics and exoskeletons. A rehabilitation lab is designed for advanced prosthetics and robotic controls with a movable “earthquake platform” that can tilt in any direction while force-feedback plates measure ground contact.
A three-story fly zone allows for the testing of drones and other autonomous aerial vehicles indoors. An outdoor Mars yard was designed with input from planetary scientists at U-M and NASA to enable researchers and student teams to test rover and lander concepts on a landscape that mimics the Martian surface. An AI-designed “robot playground” outdoor obstacle course is designed for testing robots on stairs, rocks, and water surrounded by motion capture cameras. A high-bar garage space for self-driving cars allows for teams to test connected and automated vehicles in urban and suburban environments. Ford roboticists occupy the building’s fourth floor research lab and offices.
The Ford Robotics Building is expected to achieve LEED Gold certification. HED provided architecture, landscape architecture, interior design, and structural, mechanical, and electrical engineering services on the project.
Related Stories
| Nov 3, 2014
An ancient former post office in Portland, Ore., provides an even older art college with a new home
About seven years ago, The Pacific Northwest College of Art, the oldest art college in Portland, was evaluating its master plan with an eye towards expanding and upgrading its campus facilities. A board member brought to the attention of the college a nearby 134,000-sf building that had once served as the city’s original post office.
| Oct 16, 2014
Perkins+Will white paper examines alternatives to flame retardant building materials
The white paper includes a list of 193 flame retardants, including 29 discovered in building and household products, 50 found in the indoor environment, and 33 in human blood, milk, and tissues.
| Oct 15, 2014
Harvard launches ‘design-centric’ center for green buildings and cities
The impetus behind Harvard's Center for Green Buildings and Cities is what the design school’s dean, Mohsen Mostafavi, describes as a “rapidly urbanizing global economy,” in which cities are building new structures “on a massive scale.”
| Oct 14, 2014
Proven 6-step approach to treating historic windows
This course provides step-by-step prescriptive advice to architects, engineers, and contractors on when it makes sense to repair or rehabilitate existing windows, and when they should advise their building owner clients to consider replacement.
| Oct 12, 2014
AIA 2030 commitment: Five years on, are we any closer to net-zero?
This year marks the fifth anniversary of the American Institute of Architects’ effort to have architecture firms voluntarily pledge net-zero energy design for all their buildings by 2030.
| Sep 24, 2014
Architecture billings see continued strength, led by institutional sector
On the heels of recording its strongest pace of growth since 2007, there continues to be an increasing level of demand for design services signaled in the latest Architecture Billings Index.
| Sep 22, 2014
4 keys to effective post-occupancy evaluations
Perkins+Will's Janice Barnes covers the four steps that designers should take to create POEs that provide design direction and measure design effectiveness.
| Sep 22, 2014
Sound selections: 12 great choices for ceilings and acoustical walls
From metal mesh panels to concealed-suspension ceilings, here's our roundup of the latest acoustical ceiling and wall products.
| Sep 17, 2014
New hub on campus: Where learning is headed and what it means for the college campus
It seems that the most recent buildings to pop up on college campuses are trying to do more than just support academics. They are acting as hubs for all sorts of on-campus activities, writes Gensler's David Broz.