Claims
- 1. A method for dynamically reconfiguring switched connection paths between multiple electronic modules, each electronic module having N connections, the method comprising the steps of:determining a single root switch for each electronic module, with a remaining N−1 connections in each electronic module tagged as branch switches, and maintaining a continuous switched connection path through multiple electronic modules, with a first set of N≧1 branch switches in each electronic module connecting to the single root switch of another connected electronic module, and a second set of N≧0 branch switches being inactivated to prevent branch switch to branch switch connections between electronic modules.
- 2. The method of claim 1, further comprising the step of arranging the multiple electronic modules in a two dimensional array.
- 3. The method of claim 1, further comprising the step of arranging the multiple electronic modules in a three dimensional array.
- 4. The method of claim 1, further comprising the step of defining the electronic modules as space filling polyhedra to permit space filling packing of the electronic modules.
- 5. The method of claim 1, further comprising the step of transferring electrical power between the electronic modules through the switched connection path.
- 6. The method of claim 1, further comprising the step of transferring data between the electronic modules through the switched connection path.
- 7. A method for dynamically reconfiguring switched connection paths between self movable robotic modules, each self movable robotic module having N connections, the method comprising the steps of:determining a single root switch for each robotic module, with a remaining N−1 connections in each robotic module tagged as branch switches, moving a robotic module from a first connection site to a second connection site, and remapping the switched connection path to maintain a continuous switched connection path through multiple robotic modules, with a first set of N≧1 branch switches connecting to the single root switch of each connected electronic module, and a second set of N≧0 branch switches being inactivated to prevent branch switch to branch switch connections between robotic modules.
- 8. An apparatus for dynamically reconfiguring switched connection paths between multiple electronic modules, each electronic module having N connections, the apparatus comprising:a determinable root switch for each electronic module, with other N−1 connections in each electronic module tagged as branch switches, and a switched power path maintaining a continuous switched connection between a tagged branch switch and a root switch of another connected electronic module, and preventing connection between other tagged N−1 branch switchs and branch switches of other connected electronic modules.
- 9. The apparatus of claim 8, wherein the determinable root switch is mechanically defined.
- 10. The apparatus of claim 8, wherein the determinable root switch is electrically defined.
Government Interests
This work was funded in part by the Defense Advanced Research Projects Agency (DARPA), Contract #DABT630095C-025 and Contract #MDA972-98-C-0009. The U.S. Government may have certain rights in this invention.
US Referenced Citations (7)
Number |
Name |
Date |
Kind |
4785399 |
Evans et al. |
Nov 1988 |
|
5103403 |
Ch'Hayder et al. |
Apr 1992 |
|
5523662 |
Goldenberg et al. |
Jun 1996 |
|
5662587 |
Grundfest et al. |
Sep 1997 |
|
5784542 |
Ohm et al. |
Jul 1998 |
|
6084373 |
Goldenberg et al. |
Jul 2000 |
|
6088017 |
Tremblay et al. |
Jul 2000 |
|
Non-Patent Literature Citations (2)
Entry |
Gregory et al., Kinematics of a metamorphic robotic system G.S. Robotics and Automation, Proceedings., IEEE International Confere, 1994.* |
Abidi et al., A multisensor robotic module interchange system for space maintenance Southeastcon Proceedings. Energy and Information, 1989. |