Abstract:
A retrieval device for an unmanned aircraft. The retrieval device may include a frame that supports a flexible material. The flexible material may form a receptacle portion shaped to receive the unmanned aircraft. The flexible material may absorb at least a portion of the energy exerted by the aircraft landing within the receptacle portion. Wheels may be connected to the frame to further control and absorb energy from the landing.
Abstract:
Methods, circuits, and systems for time encoder-based unmixing of hyperspectral imaging data are disclosed. A method of unmixing hyperspectral imaging data includes receiving mixed image data of one or more pixels. The mixed image data is generated by an imaging device that captures hyperspectral data. The mixed image data includes sensed spectral band intensities of materials in an area represented by a particular pixel. The mixed image data is converted from first analog domain signals into pulse domain signals. A solution to a mixing equation in the pulse domain is generated to identify abundances of one or more of the materials based on the sensed spectral band intensities. The sensed spectral band intensities are compared to reference spectral band intensities of a set of considered materials. The solution is converted from a pulse domain into an analog domain as second analog domain signals.
Abstract:
Internal structure for aircraft comprising a skin (1) of composite material, some stringers (2) of composite material integrated into the interior of the aforementioned skin (1) and some frames (3) of composite material, comprising the skin (1) with some zones (4) in which its thickness (20) is greater than the thickness (10) this skin (1) has in the rest of its section, with the stringers (2) integrated into these zones (4) of the skin (1), achieving with this arrangement the isolation of the interface line (5) of the stringer (2) joint with the skin (1) from the skin (1) with thickness (10).
Abstract:
The disclosed invention provides apparatus and methods that can convert frequencies of time-encoded signals. In one aspect, a down-converter circuit includes low-pass filters, a switch, a time encoder, and an output low-pass filter. In another aspect, an up-converter circuit includes an analog or digital input time encoder, low-pass filters, a switch, an output time encoder, and a time-encoded band-pass filter. In yet another aspect, a complete receiver system is provided. The receiver system can operate effectively with signals in the radio frequency range.
Abstract:
A neural network has an array of interconnected processors, each processor operating either the pulse domain or spike domain. Each processor has (i) first inputs selectively coupled to other processors in the array of processors, each first input having an associated 1 bit DAC coupled to a summing node, (ii) second inputs selectively coupled to inputs of the neural network, the second inputs having current generators associated therewith coupled to said summing node, (iii) a filter/integrator for generating an analog signal corresponding to current arriving at the summing node, (iv) an optional nonlinear element coupled to the filter/integrator, and (v) an analog-to-pulse converter, if the processors operate in the pulse domain, or an analog-to-spike convertor, if the processors operate in the spike domain, for converting an analog signal output by the optional nonlinear element or by the filter/integrator to either the pulse domain or spike domain, and providing the converted analog signal as an unquantized pulse or spike domain signal at an output of the processor. The array of processors are selectively interconnected with either unquantized pulse domain or spike domain signals.
Abstract:
A digital to analog converter includes a time encoder that converts an analog input signal into a asynchronous pulse sequence, a pulse asynchronous DeMUX circuit that converts the asynchronous pulse sequence into a parallel stream of pulse sequences at a relatively lower speed, a parallel pulse to asynchronous digital converter, an asynchronous digital to synchronous digital converter, a timing reference circuit to generate absolute time references, and a Digital Signal Processor. This architecture provides for analog to digital conversion based on pulse encoding with a parallel digitization scheme of the pulse encoded signal.
Abstract:
A connector equipped with an insulant comprising four channels. Each channel is able to receive at the location of a rear extremity a strand of a cable, and at the location of a front extremity an end of a contact in order to connect each strand to an end. The connector comprises a ferrule equipped with four cavities arranged in such a way that a front extremity of each cavity coincides with a rear extremity of a channel of the insulant in such a way that each strand connected to an end in the connector extends in a cavity of the ferrule and in a corresponding channel of the insulant. The invention also relates to a process for fitting the coaxial cables in such a connector.
Abstract:
A performance of a telecommunication feature for a telecommunication customer is monitored. Based on the monitored performance, if an estimate of future performance of the telecommunication feature for the telecommunication customer is determined to be unfavorable, the telecommunication customer is informed of same.