Three-piston ankle mechanism of a legged robot and associated control system

US9878751B1 · US · B1

Patent metadata
FieldValue
Publication numberUS-9878751-B1
Application numberUS-201514878007-A
CountryUS
Kind codeB1
Filing dateOct 8, 2015
Priority dateOct 8, 2015
Publication dateJan 30, 2018
Grant dateJan 30, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

An example robot includes a first actuator and a second actuator connecting a first portion of a first member of the robot to a second member of the robot. Extension of the first actuator accompanied by retraction of the second actuator causes the first member to roll in a first roll direction. Retraction of the first actuator accompanied by extension of the second actuator causes the first member to roll in a second roll direction. A third actuator connects a second portion of the first member to the second member. Extension of the third actuator accompanied by retraction of both the first and second actuators causes the first member to pitch in a first pitch direction. Retraction of the third actuator accompanied by extension of both the first and second actuators causes the first member to pitch in a second pitch direction.

First claim

Opening claim text (preview).

What is claimed is: 1. A robot comprising: a first actuator and a second actuator connecting an anterior portion of a first member of the robot to a second member of the robot, wherein extension of the first actuator accompanied by retraction of the second actuator causes the first member to roll in a first roll direction relative to the second member, and wherein retraction of the first actuator accompanied by extension of the second actuator causes the first member to roll in a second roll direction opposite to the first roll direction relative to the second member; a third actuator connecting a posterior portion of the first member to the second member, wherein extension of the third actuator accompanied by retraction of one of or both the first and second actuators causes the first member to pitch in a first pitch direction relative to the second member, and wherein retraction of the third actuator accompanied by extension of both the first and second actuators causes the first member to pitch in a second pitch direction opposite to the first pitch direction relative to the second member; and wherein the first actuator includes a first chamber, the second actuator includes a second chamber, and the third actuator includes a third chamber and a fourth chamber, the robot further comprising a hydraulic system that includes: (i) a source of pressurized hydraulic fluid; (ii) a first valve configured to: (a) control fluid flow from the source to the first chamber, while controlling fluid flow discharged from the third chamber to a hydraulic return line, or (b) control fluid flow from the source to the third chamber, while controlling fluid flow discharged from the first chamber to the hydraulic return line; and (iii) a second valve configured to: (a) control fluid flow from the source to the second chamber, while controlling fluid flow discharged from the fourth chamber to the hydraulic return line, or (b) control fluid flow from the source to the fourth chamber, while controlling fluid flow discharged from the second chamber to the hydraulic return line. 2. The robot of claim 1 , further comprising: a hydraulic system including at least (i) a source of pressurized hydraulic fluid, (ii) a first valve configured to control fluid flow from the source to the first actuator and from the first actuator to a hydraulic return line, (iii) a second valve configured to control fluid flow from the source to the second actuator and from the second actuator to the hydraulic return line, and (iv) a third valve configured to control fluid flow from the source to the third actuator and from the third actuator to the hydraulic return line. 3. The robot of claim 1 , further comprising an intermediate member coupled to the first member, wherein the third actuator connects the intermediate member to the second member of the robot such that (i) motion of the first and second actuators in opposite directions relative to each other causes the first member to roll relative to the intermediate member, and (ii) motion of the third actuator in an opposite direction relative to motion of at least one of the first actuator and the second actuator causes the first member and the intermediate member to pitch. 4. The robot of claim 1 , wherein the robot includes a leg, and wherein the first member is a foot of the leg and the second member is a shin of the leg. 5. The robot of claim 4 , further comprising a controller, wherein the controller is configured to perform operations comprising: determining a desired location for a center of pressure of the foot as the robot operates on a surface; determining pitch and roll torques to be applied by the foot on the surface to cause a location of the center of pressure to be within a threshold distance from the desired location; and actuating the first, second, and third actuators to cause the foot to apply the determined pitch and roll torques. 6. The robot of claim 5 , wherein the operations further comprise: determining that the pitch and roll torques are unachievable; modifying at least one of the pitch and roll torques to obtain a modified combination of pitch and roll torques that are achievable by actuating the first, second, and third actuators; and actuating the first, second, and third actuators to cause the foot to apply the modified combination of pitch and roll torques. 7. The robot of claim 6 , wherein modifying at least one of the pitch and roll torques comprises prioritizing either the roll torque or the pitch torque so as to maintain the prioritized torque substantially the same, while modifying the other torque. 8. The robot of claim 6 , wherein modifying at least one of the pitch and roll torques comprises modifying both the roll and pitch torques so as to preclude a change of sign of the roll and pitch torques. 9. A method comprising: determining by a control system of a robot, a desired location for a center of pressure of a foot of the robot operating on a surface, wherein the robot includes: (i) a first actuator and a second actuator connecting a first portion of the foot to a shin of the robot, wherein extension of the first actuator accompanied by retraction of the second actuator causes the foot to roll in a first roll direction relative to the shin, and wherein retraction of the first actuator accompanied by extension of the second actuator causes the foot to roll in a second roll direction opposite to the first roll direction relative to the shin; and (ii) a third actuator connecting a second portion of the foot to the shin, wherein extension of the third actuator accompanied by retraction of one of or both the first and second actuators causes the foot to pitch in a first pitch direction relative to the shin, and wherein retraction of the third actuator accompanied by extension of one of or both the first and second actuators causes the foot to pitch in a second pitch direction opposite to the first pitch direction relative to the shin, wherein the first actuator includes a first chamber, the second actuator includes a second chamber, and the third actuator includes a third chamber and a fourth chamber, the robot further comprising a hydraulic system that includes: (i) a source of pressurized hydraulic fluid, (ii) a first valve configured to: (a) control fluid flow from the source to the first chamber, while controlling fluid flow discharged from the third chamber to a hydraulic return line, or (b) control fluid flow from the source to the third chamber, while controlling fluid flow discharged from the first chamber to the hydraulic return line, and (iii) a second valve configured to: (a) control fluid flow from the source to the second chamber, while controlling fluid flow discharged from the fourth chamber to the hydraulic return line, or (b) control fluid flow from the source to the fourth chamber, while controlling fluid flow discharged from the second chamber to the hydraulic return line; determining pitch and roll torques to be applied by the foot on the surface to cause a location of the center of pressure to be within a threshold distance from the desired location; and actuating at least one of the first, second, and third actuators to cause the foot to apply the determined pitch and roll torques. 10. The method of claim 9 , wherein determining the pitch and roll torques comprises: determining that the pitch and roll torques are unachievable; and modifying at least one of the pitch and roll torques to obtain a modified combination of pitch and roll torques that are achievable by actuating at least one of the first, second, and third actuators. 11. The method of claim 10 , wherein modifying at least one of the pitch and roll to

Assignees

Inventors

Classifications

  • B62D57/032Primary

    with alternately or sequentially lifted supporting base and legs; with alternately or sequentially lifted feet or skid (B62D57/024 takes precedence) · CPC title

  • compliant, force, torque control, e.g. combined with position control · CPC title

  • Mobile manipulator, movable base with manipulator arm mounted on it · CPC title

  • Mobile robot · CPC title

  • Joint · CPC title

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Frequently asked questions

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What does patent US9878751B1 cover?
An example robot includes a first actuator and a second actuator connecting a first portion of a first member of the robot to a second member of the robot. Extension of the first actuator accompanied by retraction of the second actuator causes the first member to roll in a first roll direction. Retraction of the first actuator accompanied by extension of the second actuator causes the first mem…
Who is the assignee on this patent?
Google Inc, Boston Dynamics Inc
What technology area does this patent fall under?
Primary CPC classification B62D57/032. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Jan 30 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).