SYSTEM AND METHOD FOR ASSESSING AN OPERATING CONDITION OF AN ASSET

    公开(公告)号:WO2021061783A1

    公开(公告)日:2021-04-01

    申请号:PCT/US2020/052232

    申请日:2020-09-23

    Abstract: An exemplary mobile apparatus for assessing an operating condition of an asset. The mobile device includes at least one sensor device for acquiring data related to one or more operational or environmental characteristics of an asset during operation. The mobile device further includes a processing device encoded with a neural network architecture having one or more models trained to identify one or more operating conditions of one or more assets according to asset type. The processing device can determine an operating condition of the asset by extracting features from the acquired data and comparing attributes of the extracted features to attributes of at least one known operating condition determined through training of the models. The mobile device can also include an output interface to output a result of the determination performed by the processing device, which can include communicating the result to a remote device.

    METHODS AND SYSTEMS FOR ACQUIRING AND PROCESSING DATA AT INTELLIGENT EDGE DEVICES VIA SOFTWARE KERNALS

    公开(公告)号:WO2020076834A1

    公开(公告)日:2020-04-16

    申请号:PCT/US2019/055205

    申请日:2019-10-08

    Abstract: A method and system are disclosed for acquiring and processing data, the exemplary system includes: one or more intelligent sensor devices connected in a dynamic ad hoc network as a network of edge devices which can optionally access cloud storage, at least one intelligent sensor device being configured with a software installation to selectively receive and execute analytics on data received; at least one of the intelligent sensor devices being configured to identify data to be requested from at least one other edge device for enhancing analytics performed on the at least one intelligent sensor device; and a switchboard for maintaining a current view of resources in the network, and functions for which each resource is tasked, the resources including the at least one intelligent sensor device and those edge devices which can communicate with the at least one intelligent sensor device on the network.

    PROCESS AND SYSTEM FOR ESTABLISHING UNIDIRECTIONAL TRUSTED MESSAGING VIA HETEROGENEOUS AND HIERARCHICAL COMPUTING PLATFORMS

    公开(公告)号:WO2020023109A1

    公开(公告)日:2020-01-30

    申请号:PCT/US2019/034514

    申请日:2019-05-30

    Abstract: A computer-automated method for securing unidirectional communication within a network. The method includes orchestrating an automated arrangement and/or coordination of at least one portion of a message using a top-level orchestration server, transmitting a first data packet from the top-level orchestration server to a first top-level backbone server, wherein the first data packet is a first portion of the message, and authenticating the first data packet using the first top-level backbone server. The method can include transmitting a second data packet from the first top-level backbone server to a second top-level backbone server, wherein the second data packet is a second portion of the message and/or the second data packet includes a modified first data packet and authenticating the second data packet using the second top-level backbone server.

    A SYSTEM FOR ENHANCING AN ANALOG SIGNAL
    48.
    发明申请
    A SYSTEM FOR ENHANCING AN ANALOG SIGNAL 审中-公开
    一种增强模拟信号的系统

    公开(公告)号:WO1992012512A1

    公开(公告)日:1992-07-23

    申请号:PCT/US1991000044

    申请日:1991-01-11

    CPC classification number: H03H7/01

    Abstract: A system for enhancing an analog signal by eliminating undesired portions of a detected signal, such as incoherent, background noise is disclosed. A detected input signal is divided into two paths (P1 and P2), each path having a high pass filter (50, 52) for removing low frequency noise components beneath the frequency band of the desired portion of the input signal. One signal path (P2) is delayed by a predetermined time delay (54) and summed in a summer (56) with the other signal path (P1). By shifting and summing the two path signals, the desired signal is enhanced in a number of ways. First, the incoherent, undesired portions of the detected signal within the frequency band may be significantly attenuated or cancelled. Second, the gain of the desired portion of the detected signal is increased. Third, the quality of the desired signal is improved with the addition of a reverberation component. A low pass filter (58) is used to remove any residual signals above the voice band.

    Abstract translation: 公开了一种通过消除诸如非相干背景噪声的检测信号的不期望部分来增强模拟信号的系统。 检测的输入信号被分成两个路径(P1和P2),每个路径具有高通滤波器(50,52),用于去除输入信号的期望部分的频带之下的低频噪声分量。 一个信号路径(P2)被延迟了预定的时间延迟(54),并且在夏季(56)与另一个信号路径(P1)相加。 通过对两个路径信号进行移位和求和,以多种方式增强了期望的信号。 首先,可以显着地衰减或取消频带内检测到的信号的非相干,不期望的部分。 其次,检测信号的期望部分的增益增加。 第三,通过添加混响分量来提高期望信号的质量。 低通滤波器(58)用于去除语音频带之上的任何残留信号。

    MODULAR PAYLOAD FOR UNMANNED VEHICLE
    49.
    发明申请

    公开(公告)号:WO2023283302A1

    公开(公告)日:2023-01-12

    申请号:PCT/US2022/036308

    申请日:2022-07-07

    Abstract: Embodiments disclose a method for determining a payload platform configuration. The method involves receiving platform specifications, receiving payload specifications for a first payload and a second payload, and receiving operational constraints for a vehicle to which the platform and the second payload will be attached, the operational constraints being based on payload specifications for the first payload. The method involves using finite element analysis and/or dynamic load analysis to generate predictions about operational performance of the vehicle and corresponding properties of the platform, the predictions being based on payload specifications for the second payload. The method involves generating at least one of: a platform configuration that meets a predetermined operational performance of the vehicle, the platform configuration being based on payload specifications for the second payload; or an operational performance result for a predetermined platform configuration, the operational performance result being based on payload specifications for the second payload.

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