DATA-ANALYSIS-BASED CONTROL OPTIMIZATION OF SHADOW-EFFECT ENERGY GENERATION

    公开(公告)号:US20250038571A1

    公开(公告)日:2025-01-30

    申请号:US18358171

    申请日:2023-07-25

    Abstract: Data-analysis-based processes for optimizing road-based, shadow-effect energy generation are provided. The processes include obtaining a data-analysis-based control to facilitate energy harvesting using road-based, shadow-effect energy generation. The data-analysis-based control determines, for multiple road segments of a road, a respective illumination-to-shadow contrast value, and based on the respective illumination-to-shadow contrast values, identifies one or more road segments of the multiple road segments for shadow-effect energy generation. In addition, the data-analysis-based control initiates install of a shadow-effect energy generator in a road segment of the identified one or more road segments to facilitate energy harvesting from the road segment.

    DATA-ANALYSIS-BASED CONTROL OF FLOATING SOLAR ARRAY LOCATION

    公开(公告)号:US20240380355A1

    公开(公告)日:2024-11-14

    申请号:US18314306

    申请日:2023-05-09

    Abstract: A data-analysis-based process of controlling a floating solar array location is provided. The process includes providing data analysis-based control of location of the floating solar array on water within a geographical area. The floating solar array has a propulsion system coupled to the floating solar array to facilitate relocating of the floating solar array. The control is configured to identify, using one or more machine learning prediction models, a region of a plurality of regions of the geographical area which meets, for a forecasted time period, a predefined criteria for harvesting energy from the floating solar array. Further, the control is configured to initiate, using the propulsion system, dynamic relocating of the floating solar array to the identified region of the geographical area to facilitate solar energy harvesting from the floating solar array for the forecasted time period.

    GEO-RESTRICTED DATA MANAGEMENT IN SATELLITE CONSTELLATION DATACENTERS

    公开(公告)号:US20240259100A1

    公开(公告)日:2024-08-01

    申请号:US18161602

    申请日:2023-01-30

    CPC classification number: H04B10/29

    Abstract: Disclosed embodiments provide systems and methods for implementing enhanced geo-restricted data management in satellite constellation datacenters. A disclosed system and methods implement a satellite constellation datacenter of multiple LEO satellites that enables real-time satellite communications using lasers and secure data storage in the satellite constellation datacenter to protect critical data from unauthorized access and supports secure data transfer between the LEO satellites using laser based data transfer. To enable secure storage of geo-location restricted data in a LEO satellite, the LEO satellite constellation datacenter defines a geo-location cone and requires that the geo-location restricted data be stored within the geo-location cone. LEO satellites within the defined geo-location cone store the geo-location restricted data and securely transfer the geo-location restricted data from one satellite to another satellite within the defined geo-location cone.

    MANEUVERING SPACECRAFT HAVING SOLAR SAILS
    5.
    发明公开

    公开(公告)号:US20240182184A1

    公开(公告)日:2024-06-06

    申请号:US18060764

    申请日:2022-12-01

    CPC classification number: B64G1/242 B64G1/363 B64G1/407 B64G3/00

    Abstract: Embodiments herein describe maneuvering a spacecraft using a solar sail when sunlight is not available. Smaller satellites may rely solely on solar sails in order to maneuver to different locations (e.g., different orbits) to adjust for orbital decay, avoid collisions with other satellites, or to avoid space junk. However, solar sails cannot rely on the sun when orbiting on the dark side of a planet (e.g., when in the earth's shadow). When a spacecraft should maneuver but the sun is not available as a power source, the embodiments herein describe identifying other spacecraft within line-of-sight (LOS) of the spacecraft and using these spacecraft to direct lasers (or reflecting sunlight if available) at the spacecraft to maneuver it to a desired path (e.g., a new orbit).

    COCHLEAR IMPLANT SYSTEM AND METHOD
    7.
    发明公开

    公开(公告)号:US20240114302A1

    公开(公告)日:2024-04-04

    申请号:US17937702

    申请日:2022-10-03

    CPC classification number: H04R25/606 H04R25/305

    Abstract: Method and system for a cochlear implant that includes receiving, by a processor, an electric audio signal; processing, by the processor, the electric audio signal, thereby providing a processed electric audio signal; receiving, by a transducer driver, the processed electric audio signal; transmitting, by the transducer driver, the processed electric audio signal to electro-acoustic transducer elements that are at least arranged within a cochlea; and vibrating at least one electro-acoustic transducer element of the electro-acoustic transducer elements in response to the at least one electro-acoustic transducer element receiving the processed electric audio signal, thereby providing a vibrating stimulus based on the processed electric audio signal.

    ENFORCING SECURITY RULES ALONG A TRAJECTORY OF DATA MOVEMENT

    公开(公告)号:US20230262094A1

    公开(公告)日:2023-08-17

    申请号:US17673410

    申请日:2022-02-16

    CPC classification number: H04L63/20 H04L63/105 H04L63/0263 H04L63/0407

    Abstract: Provided are techniques for enforcing security rules along a trajectory of data movement. Confidentiality levels of source data and of processed data at different points of an existing trajectory path in an application landscape are identified by analyzing source metadata of the source data and processed metadata of the processed data. One or more trajectory paths that meet security levels that correspond to the confidentiality levels are identified by analyzing microservice generated logs and an application landscape description with reference to the confidentiality levels of the source data and the processed data. A trajectory path is selected from the one or more trajectory paths. A workflow is generated to move the source data and the processed data through the selected trajectory path, and the workflow is executed to move the source data and the processed data through microservices of the selected trajectory path while enforcing the security levels.

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