Abstract:
The present invention provides a system and automated methods to enable a collection of electronic information to be divided into multiple asymmetric scrambled subsets, stored across a plurality of disparate apparatuses, and reconstructed as needed. The present invention provides automated methods to adjust the relative size of the scrambled subsets based upon characteristics such as performance, cost and available space of the apparatuses on which the subsets are stored. The present invention enables the scrambled subsets of electronic information to be created, accessed and manipulated as though they are located on a local device in an integrated and unscrambled state. The present invention enables fault tolerance and enhanced performance through optional redundancy and parity capabilities. The present invention generates an electronic blueprint used to deconstruct the original collection of electronic information and reconstruct it as needed. This electronic blueprint may be encrypted, transferred and shared as required.
Abstract:
The present invention provides a system and automated methods to enable a collection of electronic information to be divided into multiple asymmetric scrambled subsets, stored across a plurality of disparate apparatuses, and reconstructed as needed. The present invention provides automated methods to adjust the relative size of the scrambled subsets based upon characteristics such as performance, cost and available space of the apparatuses on which the subsets are stored. The present invention enables the scrambled subsets of electronic information to be created, accessed and manipulated as though they are located on a local device in an integrated and unscrambled state. The present invention enables fault tolerance and enhanced performance through optional redundancy and parity capabilities. The present invention generates an electronic blueprint used to deconstruct the original collection of electronic information and reconstruct it as needed. This electronic blueprint may be encrypted, transferred and shared as required.
Abstract:
The present invention provides a system and related devices, systems and methods to enable the controlled and predictable emission of electromagnetic radiation from objects that previously were impossible or impractical to utilize as electromagnetic emitters or to place electromagnetic emitters on. The present invention includes addressable electromagnetic emitter “elements”, a plurality of which is applied as a continuous surface coating or is otherwise integrated with one or more three dimensional objects (the “subject”). Said plurality of elements (“array of elements”) is controlled by an array controller which accepts electrical input signals, generates and transmits, by means of a shared transmission medium, corresponding control signals to elements in the array. An automated configuration method and system provide configuration data utilized by the array controller to convert input signals to control signals compensating for irregular element placement, radiance and other factors unique to an application of the present invention.
Abstract:
The present invention is a system which facilitates the launch and recovery of an aircraft or other vehicle by another vehicle or site. This system includes cables, wires or other “lines” that are connected to both the subject vehicle and the launch and recovery platform and facilities to extend, retract and position these lines. When the relative motion of the subject vehicle and launch and recovery platform causes the lines to intersect, the lines are connected to each other by means of a hook, carabiner or similar attachment device resulting in the effective capture of the subject vehicle. One or both of the lines may then be retracted resulting in the recovery of the subject vehicle. Launch is accomplished by extending one or both of the lines and subsequently releasing the attachment device.