Abstract:
Technologies for displaying graphical elements on a graphical user interface include a wearable computing device to generate a captured image. The wearable computing device analyzes the captured image to generate image location metric data for one or more prospective locations on the graphical user interface at which to place a graphical element. The image location metric data indicates one or more image characteristics of the corresponding prospective location. The wearable computing device determines appropriateness data for each prospective location based on the corresponding image location metric data. The appropriate data indicates a relative suitability of the corresponding location for display of the graphical element. The wearable computing device selects one of the prospective locations based on the appropriateness data and displays the graphical element on the graphical user interface at the selected prospective location.
Abstract:
Methods, apparatus, systems, and articles of manufacture are disclosed for data collection balancing for sustainable storage. An example apparatus includes at least one memory, machine executable instructions, and processor circuitry to at least one of execute or instantiate the machine executable instructions to orchestrate resources in an edge environment based on data ingested from a data source, execute a machine learning model based on the data to generate outputs, the outputs including at least one of a first value representative of data criticality or a second value representative of data quality of the data, reduce resource requirements associated with the resources of the edge environment based on the outputs to effectuate green data management of the edge environment, and cause an operation at a node of the edge environment based on at least one of the data or the outputs, the node associated with the data.
Abstract:
Examples described herein relate to a network interface device that includes a direct memory access (DMA) circuitry; a network interface; at least two host interfaces to simultaneously connect to multiple platforms; an interface to a memory device; and circuitry. In some examples, at least two of the multiple platforms include a processor and a memory coupled to a circuit board. In some examples, the circuitry is to: based on a level of security classification of a second platform of the multiple platforms, perform secure transfer of data from a first platform of the multiple platforms to the second platform of the multiple platforms and enforce rules for data access and data transfer by the multiple platforms.
Abstract:
A computer-implemented system, platform, device, and method of audio processing comprises receiving, by processor circuitry, a mixed audio signal having a plurality of audio sources, and separating the mixed audio signal into at least one separate target audio source signal; and determining whether or not the at least one separate target audio source signal is associated with at least one target audio source. This also comprises inputting at least one of the separate target audio source signals into a classifying neural network.