Abstract:
A method of mitigating the system-level effect of a fault detected in a vehicle system during a vehicle mission, the method comprising: using a processor to automatically prognose the system-level effect of said fault in terms of the residual capability of the vehicle system during the remainder of the mission, on the basis of predetermined stored data; using a processor to automatically generate a corresponding set of alternative reversionary or investigative action plans for mitigating said system-level effect during the remainder of the vehicle mission, on the basis of said prognosis; submitting the set of alternative reversionary action plans to a decision-making authority for determination by the decision-making authority of a preferred one of the reversionary action plans suitable for achieving a mission objective; and using a control unit, operably connected to the vehicle system, to implement the preferred reversionary action plan in accordance with said determination.
Abstract:
A roller cover and mechanism of operation of a roller cover is described. The roller cover comprises a body portion and at least one track along which the body portion is adapted to move. The mechanism of operation of the roller cover comprises a winding system, and winder and a drive system for raising and lowering the track. The winding system comprises a first spindle and a second spindle and a supporting sheet. The winder comprises an arm secured substantially perpendicularly to the longitudinal axis of the first spindle. The drive system comprises an articulated arm rotatably attached at one end thereof to the track.
Abstract:
The present invention generally relates to a microendoscope assembly capable of intra-ductal use. The microendoscope generally comprises: an outer cylindrical guide tube defining an internal passageway having an exterior diameter of no greater than about 1.0 mm; a first internal cylindrical tube defining a working channel having an interior diameter of no less than about 0.5 mm; a second internal cylindrical tube defining a image guide and housing a lens; and an illumination bundle comprising optic fibers.
Abstract:
A method of mitigating the system-level effect of a fault detected in a vehicle system during a vehicle mission, the method comprising: using a processor to automatically prognose the system-level effect of said fault in terms of the residual capability of the vehicle system during the remainder of the mission, on the basis of predetermined stored data; using a processor to automatically generate a corresponding set of alternative reversionary or investigative action plans for mitigating said system-level effect during the remainder of the vehicle mission, on the basis of said prognosis; submitting the set of alternative reversionary action plans to a decision-making authority for determination by the decision-making authority of a preferred one of the reversionary action plans suitable for achieving a mission objective; and using a control unit, operably connected to the vehicle system, to implement the preferred reversionary action plan in accordance with said determination.
Abstract:
The disclosure details the implementation of apparatuses, methods, and systems for market generation and matches of importation and exportation transactions; i.e., a cross-border Logistics Facilitator (hereinafter “Logistics Facilitator”). Through its various components, the cross-border Logistics Facilitator creates new markets by generating and facilitating three stages of a cross-border trade transaction: identification, selection and execution. In one embodiment, the Logistics Facilitator manages the transaction by: creating a transaction “template” based on transaction information (i.e., HS product code, ISO country code, etc), alerting the buyer to potential problem areas, and updating of important upcoming dates and actions. The Logistics Facilitator creates all the required documents, integrates all events, including the service providers, and allows both parties to track the status of the transaction on-line at any time. In one embodiment, the Logistics Facilitator provides the user with a template to ensure all pertinent information is detailed, so that roles and responsibilities of the trading partners are clearly defined and transparent prior to engagement. The Logistics Facilitator has many numerous and revolutionary components to facilitate cross-border transactions, such as, but not limited to: a classification taxonomy, multi-lingual facilities, a search-enhancing thesaurus, an acquisition matrix core, a logistical fulfillment matrix, payment matrix, an elegant User Interface (UI), and/or the like.
Abstract:
A system for referring a telephone communication to one of a plurality of financial assistance providers based on lender criteria, the method including the steps of: storing telephone numbers for a plurality of financial assistance providers in memory accessible by a digital electrical computer; obtaining lender criteria for selecting one of the financial assistance providers; storing said criteria for access by said computer; identifying a debtor; selecting one of the financial assistance providers by accessing the criteria, applying the criteria, and accessing one of the stored telephone numbers; and connecting the debtor by telephone to the one of the stored telephone numbers. The system can be used with an intermediary that detects referring information sufficient to identify a referrer identity, to select which one of several financial assistance providers to refer the inbound communication by using a computer to look up and to apply referral criteria responsive to the referrer identity, and to form and track the call referral.