OUT-OF-BAND PLATFORM TUNING AND CONFIGURATION

    公开(公告)号:US20220191602A1

    公开(公告)日:2022-06-16

    申请号:US17687132

    申请日:2022-03-04

    Abstract: Devices and techniques for out-of-band platform tuning and configuration are described herein. A device can include a telemetry interface to a telemetry collection system and a network interface to network adapter hardware. The device can receive platform telemetry metrics from the telemetry collection system, and network adapter silicon hardware statistics over the network interface, to gather collected statistics. The device can apply a heuristic algorithm using the collected statistics to determine processing core workloads generated by operation of a plurality of software systems communicatively coupled to the device. The device can provide a reconfiguration message to instruct at least one software system to switch operations to a different processing core, responsive to detecting an overload state on at least one processing core, based on the processing core workloads. Other embodiments are also described.

    OPPORTUNISTIC FULL-DUPLEX COMMUNICATIONS
    3.
    发明申请
    OPPORTUNISTIC FULL-DUPLEX COMMUNICATIONS 有权
    机会全双工通信

    公开(公告)号:US20160380746A1

    公开(公告)日:2016-12-29

    申请号:US14747096

    申请日:2015-06-23

    CPC classification number: H04L5/16 H04L43/0888 H04W8/005 H04W84/12

    Abstract: Techniques for presenting communication between two or more stations in a WLAN environment are provided. Specifically, methods are presented, that when taken alone or together, provide a device or group of devices with an efficient way to adaptively switch between full duplex and half duplex communications. The present disclosure includes a method that provides increased system throughput through opportunistic full duplex transmission.

    Abstract translation: 提供了用于在WLAN环境中呈现两个或多个站之间的通信的技术。 具体地,呈现方法,当单独或一起时,提供具有在全双工和半双工通信之间自适应地切换的有效方式的设备或设备组。 本公开包括通过机会性全双工传输提供增加的系统吞吐量的方法。

    WAKE UP RADIO DEVICE, CIRCUIT CONFIGURATION, AND METHOD

    公开(公告)号:US20180007629A1

    公开(公告)日:2018-01-04

    申请号:US15196070

    申请日:2016-06-29

    Abstract: According to the present disclosure, a communication device configured to power on a main receiver to receive data from a network includes: a low power receiver configured to receive a wake up packet, including a preamble, from the network and oversample the wake up packet; a circuit arrangement including: a correlator configured to correlate the oversampled portion of the preamble; a delay and adder configured to take an output of the correlator, delay the output of the correlator, and add the output of the correlator back onto itself to produce a delay output; a peak detector configured to detect a peak pattern in the delay output; a demodulator configured to calculate a decoding threshold value to produce a demodulated data; and a packet parser configured to check the demodulated data for a data set in order to selectively output a nonzero signal to power on the main receiver.

    SELECTIVE PARTICIPATION ON FULL-DUPLEX COMMUNICATIONS

    公开(公告)号:US20170170946A1

    公开(公告)日:2017-06-15

    申请号:US14969322

    申请日:2015-12-15

    CPC classification number: H04L5/1438 H04B1/525

    Abstract: Full-duplex communications may incur some inefficiency in spectrum use for many reasons, including traffic asymmetry (e.g., different data sizes for uplink and downlink transmissions), throughput degradation (due to imperfect self-interference cancellation capability), etc. In certain cases, full-duplex communications can be less attractive and efficient, and even underperform the legacy half-duplex communications, for certain communication scenarios. Therefore, full-duplex-capable nodes (e.g., 802.11 AP and STA) should be able to evaluate performance trade-offs between full-duplex and half-duplex operations and be able to dynamically switch between full-duplex and half-duplex modes, instead of statically using full-duplex (or half-duplex) all the time.

    TECHNIQUES FOR MOBILE PLATFORM POWER MANAGEMENT USING LOW-POWER WAKE-UP SIGNALS
    8.
    发明申请
    TECHNIQUES FOR MOBILE PLATFORM POWER MANAGEMENT USING LOW-POWER WAKE-UP SIGNALS 有权
    使用低功率唤醒信号进行移动平台电源管理的技术

    公开(公告)号:US20160381638A1

    公开(公告)日:2016-12-29

    申请号:US14752270

    申请日:2015-06-26

    Abstract: Mobile platform power management is an important problem especially for battery-powered small form factor platforms such as smartphones, tablets, wearable devices, and Internet of Things (IOT) devices. A new low-power wake-up radio (LP-WUR) listens to the wireless medium for a wake-up signal with, for example, below 50 uw power consumption. The LP-WUR allows the mobile platform to completely turn off the main wireless radios, such as Wi-Fi, Bluetooth® (BT), Low-Energy Bluetooth® (BLE), and the like, and then selectively or opportunistically turn them on only when there is data to transmit or receive based on a wake-up signal.

    Abstract translation: 移动平台电源管理是一个重要的问题,特别是对于电池供电的小尺寸平台,如智能手机,平板电脑,可穿戴设备和物联网(IOT)设备。 一个新的低功耗唤醒无线电(LP-WUR)监听无线介质以获得唤醒信号,例如低于50 uw的功耗。 LP-WUR允许移动平台完全关闭主要的无线电,如Wi-Fi,蓝牙®(BT),低能耗蓝牙®(BLE)等,然后有选择地或机会地将其打开 仅当存在基于唤醒信号发送或接收的数据时。

    METHOD OF FINE GRAINED WAKE-UP MODES FOR WI-FI/BT UTILIZING WAKE-UP RECEIVER
    9.
    发明申请
    METHOD OF FINE GRAINED WAKE-UP MODES FOR WI-FI/BT UTILIZING WAKE-UP RECEIVER 有权
    用于WI-FI / BT利用唤醒接收器的细粒度唤醒模式的方法

    公开(公告)号:US20160381636A1

    公开(公告)日:2016-12-29

    申请号:US14752184

    申请日:2015-06-26

    Abstract: Mobile platform power management is an important problem especially for battery-powered small form factor platforms such as smartphones, tablets, wearable devices, Internet of Things (IOT) devices, and the like. One exemplary technique disclosed herein defines a method for a fine-grained wake-up mode for Wi-Fi/BT/BLE that utilizes a low-power wake-up radio. For example, the actual data contained in the wake-up packet can be forwarded directly to a memory block of the device without waking-up the Wi-Fi/BT/BLE radio. As another example, if an IEEE 802.11 MAC frame is contained in the wake-up packet, then just the MAC processor of the Wi-Fi/BT/BLE radio can be woken up to process the IEEE 802.11 MAC frame contained in the wake-up packet, and have the PHY module of the Wi-Fi/BT/BLE radio kept powered off or in a low power mode to, for example, save energy.

    Abstract translation: 移动平台电源管理是一个重要的问题,特别是对于电池供电的小尺寸平台,如智能手机,平板电脑,可穿戴设备,物联网(IOT)设备等。 本文中公开的一种示例性技术定义了利用低功率唤醒无线电的Wi-Fi / BT / BLE的细粒度唤醒模式的方法。 例如,包含在唤醒包中的实际数据可以直接转发到设备的存储器,而不会唤醒Wi-Fi / BT / BLE无线电。 作为另一示例,如果唤醒分组中包含IEEE 802.11MAC帧,则可以仅唤醒Wi-Fi / BT / BLE无线电的MAC处理器来处理包含在唤醒分组中的IEEE 802.11 MAC帧, 并且使Wi-Fi / BT / BLE无线电的PHY模块保持断电或处于低功率模式,以节省能量。

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