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    • 2. 发明授权
    • Error management in an audio processing system
    • 音频处理系统中的错误管理
    • US07827030B2
    • 2010-11-02
    • US11763928
    • 2007-06-15
    • Gregory Ray SmithDavid Russo
    • Gregory Ray SmithDavid Russo
    • G10L21/02
    • G10L19/005A63F2300/1031A63F2300/6063H04R2420/07
    • An audio processing system includes a voice decoder and an audio processor. In one exemplary embodiment, the audio processing system is embedded in a headset unit that is wirelessly coupled to a game console. The voice decoder is used to decode a stream of incoming voice data packets carried over a wireless signal. The decoded voice data packets are used to drive an audio transducer of the headset unit. Upon detection of an error in the incoming stream, a decoded error-free voice data packet that has been stored in a replay buffer is used to generate an amplitude scaled audio signal. The voice decoder is disconnected from the audio transducer and the scaled audio signal is used to drive the audio transducer instead.
    • 音频处理系统包括语音解码器和音频处理器。 在一个示例性实施例中,音频处理系统嵌入在无线耦合到游戏控制台的耳机单元中。 语音解码器用于对通过无线信号承载的传入语音数据分组的数据流进行解码。 解码的语音数据分组用于驱动耳机单元的音频换能器。 在检测到输入流中的错误时,已经存储在重放缓冲器中的解码的无错误语音数据分组被用于产生幅度缩放的音频信号。 语音解码器与音频传感器断开连接,并且缩放音频信号用于驱动音频换能器。
    • 3. 发明授权
    • Wireless controller
    • 无线控制器
    • US09008989B2
    • 2015-04-14
    • US13462616
    • 2012-05-02
    • Andrew WilsonDavid Russo
    • Andrew WilsonDavid Russo
    • G01P15/14G06F19/00G06F3/0346A63F13/20
    • G06F3/0346A63F13/20
    • A computing device receives acceleration information from an accelerometer mechanically coupled to a wireless controller, magnetic bearing information from a magnetometer mechanically coupled to the wireless controller, and rotation information from a gyroscope mechanically coupled to the wireless controller. When the wireless controller is primarily vertical, the computing device determines a rotation angle of the wireless controller by filtering the rotation information using the acceleration information. When the wireless controller is primarily horizontal, the computing device determines the rotation angle of the wireless controller by filtering the rotation information using the magnetic bearing information.
    • 计算设备从机械耦合到无线控制器的加速度计接收加速度信息,来自机械耦合到无线控制器的磁力计的磁轴承信息,以及来自与机器耦合到无线控制器的陀螺仪的旋转信息。 当无线控制器主要是垂直的时,计算设备通过使用加速度信息过滤旋转信息来确定无线控制器的旋转角度。 当无线控制器主要是水平的时,计算设备通过使用磁轴承信息过滤旋转信息来确定无线控制器的旋转角度。
    • 4. 发明申请
    • DYNAMIC MAGNETOMETER CALIBRATION
    • 动态磁铁计校准
    • US20140051517A1
    • 2014-02-20
    • US13588931
    • 2012-08-17
    • David Russo
    • David Russo
    • A63F13/06
    • A63F13/22A63F13/235A63F13/245A63F2300/1018G01R33/0035G01R33/028
    • Embodiments related to calibrating a game controller including a magnetometer during game play are disclosed. One embodiment provides a method comprising sampling magnetic information received from the magnetometer, and outputting, to a computing device, an initial game controller orientation signal derived from a first sample of a plurality of samples of the magnetic information and from directional offset data. The method further comprises identifying a valid minimum observed value and a valid maximum observed value from the plurality of samples of the magnetic information, and calculating updated directional offset data based on the valid minimum observed value and the valid maximum observed value. The method further comprises outputting to the computing device a calibrated game controller orientation signal derived from a second sample of the plurality of samples of the magnetic information and from the updated directional offset data.
    • 公开了在游戏过程中校准包括磁力计的游戏控制器的实施例。 一个实施例提供了一种方法,包括对从磁力计接收的磁信息进行采样,并向计算设备输出从磁信息的多个样本的第一样本和方向偏移数据导出的初始游戏控制器取向信号。 所述方法还包括从所述磁信息的所述多个采样中识别有效最小观测值和有效最大观测值,以及基于所述有效最小观测值和所述有效最大观测值来计算更新的方向偏移数据。 所述方法还包括向所述计算设备输出从所述磁信息的所述多个样本中的第二样本和所述更新的方向偏移数据导出的经校准的游戏控制器取向信号。
    • 6. 发明申请
    • WiFi collaboration method to reduce RF interference with wireless adapter
    • WiFi协作方式,减少与无线适配器的射频干扰
    • US20060217071A1
    • 2006-09-28
    • US11091557
    • 2005-03-28
    • David RussoWei Guo
    • David RussoWei Guo
    • H04B7/00
    • H04W16/14A63F2300/1025A63F2300/1031
    • A system and method for preventing a wireless controller system and WiFi radio system within a console from interfering with each other. The WiFi system is prevented from activating its transmitter during the controller receive times by detecting a signal sent to the WiFi module indicating where the controller receive times occur. Based upon the state of the signal, the WiFi transmission algorithm can determine the appropriate times to turn on and off the WiFi transmitter in concert with the defined 802.11 media access protocol. Furthermore, the WiFi module provides its operating channel information to the controller radio system to avoid using the WiFi channel for any communications.
    • 用于防止控制台内的无线控制器系统和WiFi无线电系统彼此干扰的系统和方法。 通过检测发送到WiFi模块的信号,指示控制器接收时间发生在哪里,防止WiFi系统在控制器接收时间期间激活其发射机。 基于信号的状态,WiFi传输算法可以根据定义的802.11媒体访问协议来确定适当的时间来打开和关闭WiFi发射机。 此外,WiFi模块向控制器无线电系统提供其操作信道信息,以避免使用WiFi信道进行任何通信。
    • 7. 发明授权
    • Dynamic magnetometer calibration
    • 动态磁力计校准
    • US08851996B2
    • 2014-10-07
    • US13588954
    • 2012-08-17
    • David Russo
    • David Russo
    • A63F13/06G06T15/00
    • A63F13/22A63F13/06A63F13/211A63F13/235A63F13/245A63F2300/1018G01C17/30G01R33/0035
    • Embodiments related to calibrating a game controller including a magnetometer during game play are disclosed. One embodiment provides a method comprising sampling magnetic information received from the magnetometer, and outputting, to a computing device, an initial game controller orientation signal derived from a first sample of a plurality of samples of the magnetic information and from directional offset data. The method further comprises calculating updated directional offset data based on the plurality of samples of the magnetic information and on the directional offset data, and outputting to the computing device a calibrated game controller orientation signal derived from a second sample of the plurality of samples of the magnetic information and the updated directional offset data.
    • 公开了在游戏过程中校准包括磁力计的游戏控制器的实施例。 一个实施例提供了一种方法,包括对从磁力计接收的磁信息进行采样,并向计算设备输出从磁信息的多个样本的第一样本和方向偏移数据导出的初始游戏控制器取向信号。 该方法还包括基于磁信息和方向偏移数据的多个采样来计算更新的方向偏移数据,并且向计算设备输出校准的游戏控制器定向信号,该校准游戏控制器取向信号从多个样本的第二样本 磁信息和更新的方向偏移数据。
    • 10. 发明授权
    • Peripheral card having an adaptive PCMCIA compliant interface
    • 具有适应性PCMCIA兼容接口的外围卡
    • US5613092A
    • 1997-03-18
    • US299383
    • 1994-09-01
    • Ricardo LimDavid RussoBarry MossCharles W. Bethards
    • Ricardo LimDavid RussoBarry MossCharles W. Bethards
    • G06F13/40G06F13/00G06F15/177
    • G06F13/4072
    • A peripheral card (109) having an adaptive PCMCIA compliant interface including either an adaptive card present or card configuration function that includes a peripheral apparatus (209) arranged and constructed to operate in conjunction with a host computer (101) over a PCMCIA compliant interface, and an interface logic (205), coupled to the peripheral apparatus (209) and to a PCMCIA peripheral port (201), for interfacing the peripheral apparatus to the PCMCIA peripheral port (201), the interface logic further adaptively providing a card present signal at the PCMCIA peripheral port (201) when the peripheral apparatus (209) and the interface logic (205) expects the PCMCIA peripheral port (201) to be activated by the host computer (101) or alternatively adaptively providing configuration information pertaining to the peripheral apparatus to the host computer.
    • 具有自适应PCMCIA兼容接口的外围卡(109)包括自适应卡存在或卡配置功能,所述自适应卡存在或卡配置功能包括布置和构造为通过PCMCIA兼容接口与主计算机(101)一起操作的外围设备(209) 以及耦合到所述外围设备(209)和PCMCIA外围端口(201)的用于将所述外围设备连接到所述PCMCIA外围端口(201)的接口逻辑(205),所述接口逻辑进一步自适应地提供卡存在信号 当外围设备(209)和接口逻辑(205)期望PCMCIA外围端口(201)被主计算机(101)激活时,在PCMCIA外围端口(201)处,或者自适应地提供与外围设备有关的配置信息 装置到主机。