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    • 2. 发明授权
    • Encoding method and system for reducing inter-symbol interference effects in transmission over a serial link
    • US07359437B2
    • 2008-04-15
    • US10036234
    • 2001-12-24
    • Seung Ho HwangJano BanksPaul Daniel WolfEric LeeBaegin SungAlbert M. Scalise
    • Seung Ho HwangJano BanksPaul Daniel WolfEric LeeBaegin SungAlbert M. Scalise
    • H04B1/66
    • H04L1/0057G09G5/006H04L1/203H04L1/206H04L25/49H04N19/89
    • A communication system including a transmitter, a receiver, and a serial link, in which encoded data (e.g., encoded video data and encoded auxiliary data) are transmitted from the transmitter to the receiver. The serial link can but need not be a TMDS or TMDS-like link. In typical embodiments, alternating bursts of encoded video data and encoded auxiliary data are transmitted over each of one or more channels of the link. Other aspects of the invention are transmitters for use in encoding data for transmission over a serial link, and methods for sending encoded data over a serial link. In accordance with the invention, the data to be transmitted are encoded using a subset (sometimes referred to as a selected set of code words) of a full set of code words. The selected set of code words is selected such that each stream of encoded data (comprising only such code words) transmitted over a serial link has a bit pattern that is less susceptible to inter-symbol interference (“ISI”) during transmission than is the bit pattern determined by a conventionally encoded version of the same data (comprising not only the selected set of code words but also other members of the full set). In general, the best choice for the selected set of code words selected from a full set of binary code words depends on the particular coding implemented by the full set. Typically, the selected set of code words includes words whose serial patterns (during transmission) have fewer contiguous zeros and ones (and thus are less susceptible to ISI during transmission) than do those code words in the full set that are not selected. In preferred embodiments in which the bits of the selected set of code words are transmitted over a serial link as sequences of rising and falling voltage transitions, the bit pattern of each transmitted stream of the selected set of code words implements DC balancing to limit the voltage drift over time.
    • 3. 发明申请
    • GRAND CENTRAL ARCHITECTURE
    • 大中央建筑
    • US20140270695A1
    • 2014-09-18
    • US14192463
    • 2014-02-27
    • Jano Banks
    • Jano Banks
    • G11B31/00H04N9/87
    • G11B31/00G08C17/02G08C2201/20H04N5/4403H04N5/63H04N5/765H04N5/85H04N9/87H04N21/4104H04N21/42203H04N21/42221H04N21/42222H04N21/42224H04N21/42225H04N2005/4408H04N2005/4426H04N2005/4428H04N2005/443H04R2420/07
    • A grand central architecture for an all-in-one consumer electronics (CE) media device may include a single IR/RF/Microphone handheld remote control for controlling and/or displaying information for all CE devices of a user(s) in concert with the all-in-one CE media device (e.g., a media player) operative for playback of one or more media formats including but not limited to optical discs, audio and/or video, images, music, files, streaming media content, stored media content, and other content. The all-in-one CE media device does not include internal and/or dedicated power amplifiers to drive speakers or other types of transducers. The all-in-one CE media device may wirelessly communicate RF signals to one or more speakers/transducers that either include their own dedicated internal power amplifiers or are connected with an external power amplifier. The all-in-one CE media device may wirelessly communicate with one or more microphones and/or speakers and apply algorithms for optimizing audio quality.
    • 用于一体式消费电子(CE)媒体设备的大型中央架构可以包括用于控制和/或显示用户的所有CE设备的信息的单个IR / RF /麦克风手持遥控器, 用于播放包括但不限于光盘,音频和/或视频,图像,音乐,文件,流媒体内容的一种或多种媒体格式的一体式CE媒体设备(例如,媒体播放器) 媒体内容等内容。 一体式CE媒体设备不包括用于驱动扬声器或其他类型传感器的内部和/或专用功率放大器。 一体式CE媒体设备可以将RF信号无线地传送到一个或多个扬声器/换能器,这些扬声器/换能器包括它们自己的专用内部功率放大器或者与外部功率放大器连接。 一体式CE媒体设备可以与一个或多个麦克风和/或扬声器无线通信,并应用用于优化音频质量的算法。
    • 9. 发明申请
    • Wireless link to transmit digital audio data between devices in a manner controlled dynamically to adapt to variable wireless error rates
    • 无线链路以动态控制的方式在设备之间传输数字音频数据,以适应可变的无线错误率
    • US20080168312A1
    • 2008-07-10
    • US12006607
    • 2008-01-03
    • Jano BanksJeffrey D. BooneBradley Bozarth
    • Jano BanksJeffrey D. BooneBradley Bozarth
    • G06F11/30G06F13/18
    • H04R3/00G10L19/005H04B1/707H04L1/0002H04L1/0009H04L1/0014H04L1/0015H04L1/0041H04L1/18H04R2420/07H04R2420/09
    • A communication system including a host transceiver, one or many device transceivers, and a wireless or wired link, in which encoded digital audio data and optionally also other auxiliary data are transmitted and received between the host transceiver and one or many device transceivers. The wireless link can but need not be a Certified Wireless USB (“CWUSB”) link, which utilizes WiMedia Ultra-Wideband (“UWB”) radio technology. For certain embodiments, packets of encoded audio data are transmitted from a host to a device or multiple devices over the wireless link utilizing a variety of data packet transfer methods, with the host adapting its algorithms dynamically to provide the digital audio content over a changing wireless error rate environment. The host intelligently controls the method of data transmission, including data encoding format, synchronization, latency, and transmission rate, in response to data transfer error information it detects or receives from each individual device in the system. Other embodiments are devices that employ audio-data-specific error concealment methods. Other embodiments concern host and device management of graceful muting and restart of audio on a device-by-device basis.
    • 一种包括主机收发器,一个或多个设备收发器以及无线或有线链路的通信系统,其中在主机收发器与一个或多个设备收发器之间传送和接收编码数字音频数据以及可选地其他辅助数据。 无线链路可以不需要是使用WiMedia超宽带(“UWB”)无线电技术的认证无线USB(“CWUSB”)链路。 对于某些实施例,编码音频数据的分组通过各种数据分组传输方法从主机发送到无线链路上的设备或多个设备,其中主机动态地调整其算法以通过改变的无线电提供数字音频内容 错误率环境。 响应于从系统中的每个单独设备检测或接收的数据传输错误信息,主机智能地控制数据传输的方法,包括数据编码格式,同步,延迟和传输速率。 其他实施例是使用音频数据特定的错误隐藏方法的设备。 其他实施例涉及主机和设备管理在逐个设备的基础上优雅地静音和重新启动音频。
    • 10. 发明申请
    • WIRELESS LINK TO TRANSMIT DIGITAL AUDIO DATA BETWEEN DEVICES IN A MANNER CONTROLLED DYNAMICALLY TO ADAPT TO VARIABLE WIRELESS ERROR RATES
    • 无线链接传输控制的设备之间的数字音频数据,动态地适应可变的无线错误率
    • US20160227316A1
    • 2016-08-04
    • US14882449
    • 2015-10-13
    • Jano BanksJeffrey D. BooneBradley Bozarth
    • Jano BanksJeffrey D. BooneBradley Bozarth
    • H04R3/00G10L19/005
    • H04R3/00G10L19/005H04B1/707H04L1/0002H04L1/0009H04L1/0014H04L1/0015H04L1/0041H04L1/18H04R2420/07H04R2420/09
    • A communication system including a host transceiver, one or many device transceivers, and a wireless or wired link, in which encoded digital audio data and optionally also other auxiliary data are transmitted and received between the host transceiver and one or many device transceivers. The wireless link can but need not be a Certified Wireless USB (“CWUSB”) link, which utilizes WiMedia Ultra-Wideband (“UWB”) radio technology. For certain embodiments, packets of encoded audio data are transmitted from a host to a device or multiple devices over the wireless link utilizing a variety of data packet transfer methods, with the host adapting its algorithms dynamically to provide the digital audio content over a changing wireless error rate environment. The host intelligently controls the method of data transmission, including data encoding format, synchronization, latency, and transmission rate, in response to data transfer error information it detects or receives from each individual device in the system. Other embodiments are devices that employ audio-data-specific error concealment methods. Other embodiments concern host and device management of graceful muting and restart of audio on a device-by-device basis.
    • 一种包括主机收发器,一个或多个设备收发器以及无线或有线链路的通信系统,其中在主机收发器与一个或多个设备收发器之间传送和接收编码数字音频数据以及可选地其他辅助数据。 无线链路可以不需要是使用WiMedia超宽带(“UWB”)无线电技术的认证无线USB(“CWUSB”)链路。 对于某些实施例,编码音频数据的分组通过各种数据分组传输方法从主机发送到无线链路上的设备或多个设备,其中主机动态地调整其算法以通过改变的无线电提供数字音频内容 错误率环境。 响应于从系统中的每个单独设备检测或接收的数据传输错误信息,主机智能地控制数据传输的方法,包括数据编码格式,同步,延迟和传输速率。 其他实施例是使用音频数据特定的错误隐藏方法的设备。 其他实施例涉及主机和设备管理在逐个设备的基础上优雅地静音和重新启动音频。