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    • 1. 发明授权
    • Method and system for minimizing latencies for content protection in audio/video networks
    • 用于最小化音频/视频网络内容保护延迟的方法和系统
    • US08687580B2
    • 2014-04-01
    • US13301700
    • 2011-11-21
    • Harkirat SinghLu QianChiu Ngo
    • Harkirat SinghLu QianChiu Ngo
    • H04W72/04
    • H04W74/0816H04N21/63345H04N21/63775H04W4/023H04W12/04H04W84/12
    • Reducing latencies for content protection in audio/video networks includes reserving a wireless channel for a time period to accommodate control message exchange for content protection in data communication between a wireless transmitter and wireless receiver over a wireless channel. The control message exchange includes wirelessly transmitting a control request message from the transmitter for content protection to the receiver, and transmitting a control response message from the receiver to the transmitter in reply. Reserving the wireless channel includes reserving the wireless channel for a time period that accommodates the control message exchange. The time period includes a single transmission opportunity period for communication on the wireless channel, to reduce latency for the control message exchange between the transmitter and receiver.
    • 在音频/视频网络中减少用于内容保护的延迟包括在一段时间内保留无线信道以适应用于通过无线信道的无线发射机和无线接收机之间的数据通信中的内容保护的控制消息交换。 控制消息交换包括从发射机向接收机无线发送控制请求消息,用于内容保护,以及从接收机向发射机发送控制响应消息。 保留无线信道包括在适应控制消息交换的一段时间内预留无线信道。 时间段包括用于无线信道上的通信的单个传输机会周期,以减少发射机和接收机之间的控制消息交换的等待时间。
    • 2. 发明申请
    • METHOD AND SYSTEM FOR MINIMIZING LATENCIES FOR CONTENT PROTECTION IN AUDIO/VIDEO NETWORKS
    • 用于最小化音频/视频网络内容保护的方法和系统
    • US20120127937A1
    • 2012-05-24
    • US13301700
    • 2011-11-21
    • Harkirat SinghLu QianChiu Ngo
    • Harkirat SinghLu QianChiu Ngo
    • H04W72/04
    • H04W74/0816H04N21/63345H04N21/63775H04W4/023H04W12/04H04W84/12
    • Reducing latencies for content protection in audio/video networks includes reserving a wireless channel for a time period to accommodate control message exchange for content protection in data communication between a wireless transmitter and wireless receiver over a wireless channel. The control message exchange includes wirelessly transmitting a control request message from the transmitter for content protection to the receiver, and transmitting a control response message from the receiver to the transmitter in reply. Reserving the wireless channel includes reserving the wireless channel for a time period that accommodates the control message exchange. The time period includes a single transmission opportunity period for communication on the wireless channel, to reduce latency for the control message exchange between the transmitter and receiver.
    • 在音频/视频网络中减少用于内容保护的延迟包括在一段时间内保留无线信道以适应用于通过无线信道的无线发射机和无线接收机之间的数据通信中的内容保护的控制消息交换。 控制消息交换包括从发射机向接收机无线发送控制请求消息,用于内容保护,以及从接收机向发射机发送控制响应消息。 保留无线信道包括在适应控制消息交换的一段时间内预留无线信道。 时间段包括用于无线信道上的通信的单个传输机会周期,以减少发射机和接收机之间的控制消息交换的等待时间。
    • 3. 发明授权
    • Method and system for device communication in a wireless video area network
    • 无线视频区域网络中设备通信的方法和系统
    • US08923144B2
    • 2014-12-30
    • US13007308
    • 2011-01-14
    • Huai-Rong ShaoHarkirat SinghChiu Ngo
    • Huai-Rong ShaoHarkirat SinghChiu Ngo
    • H04L12/26H04W8/00
    • H04W8/005
    • A method and system for device discovery in a wireless network is provided. The device discovery involves directionally transmitting a data unit from a transmitting station over a channel in different directions to emulate omni-directional transmission, receiving the data unit transmissions from different directions at a receiving station, determining the quality of the transmissions received from the different directions, and detecting location information for the transmitting station relative to the receiving station based on the highest quality transmission among the transmissions received from the different directions. Further, if a channel has sufficient bandwidth to satisfy direct link communication between two stations, then during a direct link set-up stage, the two stations conduct a probing message exchange using omni-direction transmission, and upon successful probing, obtain communication link status information and set proper communication configurations for the two stations based on the communication link status information.
    • 提供了一种用于无线网络中的设备发现的方法和系统。 设备发现涉及通过不同方向上的信道从发射台定向发送数据单元以模拟全向传输,在接收站从不同方向接收数据单元传输,确定从不同方向接收的传输的质量 以及基于从不同方向接收的传输中的最高质量传输来检测发送站相对于接收站的位置信息。 此外,如果信道具有足够的带宽以满足两个站之间的直接链路通信,则在直接链路建立阶段期间,两个站使用全向传输进行探测消息交换,并且在成功探测时获得通信链路状态 信息,并根据通信链路状态信息设置两个站的适当通信配置。
    • 5. 发明授权
    • Method and system for partitioning and encoding of uncompressed video for transmission over wireless medium
    • 用于通过无线介质传输的未压缩视频的分割和编码方法和系统
    • US08605797B2
    • 2013-12-10
    • US11598920
    • 2006-11-13
    • Huai-Rong ShaoHarkirat SinghChiu Ngo
    • Huai-Rong ShaoHarkirat SinghChiu Ngo
    • H04N11/04G06K9/46
    • H04N19/89
    • A method and system for transmitting uncompressed video over a wireless channel by inputting a frame of pixel information, partitioning spatially correlated pixels into different packets, and transmitting the packets separately over a wireless channel. For robust transmission, error detection data can be generated for each packet and appended to each packet before transmission. A receiver receives the transmitted packets and checks if a received packet is corrupt based on the appended error detection data. For a corrupt packet, the receiver corrects the corrupt pixels using pixel information in other received packets containing neighboring pixels to recover each corrupt pixel in the corrupt packet.
    • 一种方法和系统,用于通过输入像素信息的帧,通过无线信道发送未压缩的视频,将空间相关的像素划分成不同的分组,以及通过无线信道分别发送分组。 对于鲁棒传输,可以为每个分组生成错误检测数据,并在传输之前附加到每个分组。 接收器接收所发送的分组,并根据所附的错误检测数据来检查接收的分组是否损坏。 对于损坏的数据包,接收器使用包含相邻像素的其他接收数据包中的像素信息来校正损坏的像素,以恢复损坏的数据包中的每个损坏的像素。
    • 8. 发明授权
    • System and method for channel access in dual rate wireless networks
    • 双速率无线网络中信道接入的系统和方法
    • US08289940B2
    • 2012-10-16
    • US12357360
    • 2009-01-21
    • Harkirat SinghXiangping QinChiu Ngo
    • Harkirat SinghXiangping QinChiu Ngo
    • H04W74/08
    • H04B7/12H04B7/0615H04W16/24H04W74/002H04W74/0816
    • A system and method for wireless communication over multi-rate channels are disclosed. One embodiment of the system includes source and destination devices that use first and second channels under a contention-based protocol. The first channel is directional with a first frequency and a first range. The second channel is omni-directional with a second frequency and a second range. The second frequency is lower than the first frequency, and the second range is greater than the first range. The source device may send the destination device a request for data transmission via the first channel over the second channel. The destination device may send the source device an approval for the data transmission over the second channel. The source device may further transmit an acknowledgment (ACK) of the approval over the second channel upon receiving the approval to prevent other devices in the system from contending for data transmission.
    • 公开了一种用于通过多速率信道进行无线通信的系统和方法。 该系统的一个实施例包括在基于竞争的协议下使用第一和第二信道的源设备和目的设备。 第一通道是具有第一频率和第一范围的方向。 第二个通道是全向的,具有第二个频率和第二个范围。 第二频率低于第一频率,第二频率大于第一频率。 源设备可以经由第二信道经由第一信道向目的地设备发送对数据传输的请求。 目的设备可以通过第二信道向源设备发送数据传输许可。 源设备可以在接收到批准以防止系统中的其他设备竞争数据传输时进一步发送通过第二信道的批准的确认(ACK)。
    • 9. 发明申请
    • METHOD AND SYSTEM FOR ASYNCHRONOUS AND ISOCHRONOUS DATA TRANSMISSION IN A HIGH SPEED VIDEO NETWORK
    • 高速视频网络中异步和异步数据传输的方法与系统
    • US20120151537A1
    • 2012-06-14
    • US13308412
    • 2011-11-30
    • Harkirat SinghIlju NaJae Min LeeChiu Ngo
    • Harkirat SinghIlju NaJae Min LeeChiu Ngo
    • H04N21/00
    • H04N21/43635H04L65/607
    • A method and system for communication between audio/video (AV) devices. In one embodiment communication between AV devices includes establishing an AV path stream for AV data streaming between a source AV device and a destination AV device, wherein each AV device includes one or more I/O ports for connecting the AV device to another AV device via a communication link including multiple communication lanes. Asynchronous and isochronous AV data is multiplexed for transmission via one or more fixed length data cells, each data cell capable of carrying one or more of: an asynchronous data symbol and an isochronous data symbol. Multiplexing includes selectively mapping asynchronous data onto isochronous symbols for transmission during a video blanking period. One or more data cells are transmitted from a physical layer of the source AV device to the destination AV device, via one or more communication lanes.
    • 用于音频/视频(AV)设备之间通信的方法和系统。 在一个实施例中,AV设备之间的通信包括在源AV设备和目的地AV设备之间建立用于AV数据流的AV路径流,其中每个AV设备包括一个或多个用于将AV设备连接到另一AV设备的I / O端口, 包括多个通信线路的通信链路。 异步和等时AV数据被复用以经由一个或多个固定长度的数据信元进行发送,每个数据信元能够携带以下中的一个或多个:异步数据符号和等时数据符号。 多路复用包括将异步数据选择性地映射到同步符号上,以在视频消隐期间传输。 经由一个或多个通信线路将一个或多个数据信元从源AV设备的物理层发送到目的地AV设备。
    • 10. 发明授权
    • System and method for wireless communication of uncompressed video having delay-insensitive data transfer
    • 用于具有延迟不敏感数据传输的未压缩视频的无线通信的系统和方法
    • US08169995B2
    • 2012-05-01
    • US11868325
    • 2007-10-05
    • Harkirat SinghHuai-Rong ShaoXiangping QinChiu Ngo
    • Harkirat SinghHuai-Rong ShaoXiangping QinChiu Ngo
    • H04J3/24
    • H04L1/1671H04N19/89H04N21/238H04N21/43615H04N21/43637H04N21/8458H04W28/065
    • A system and method using a medium access control (MAC) header for a wireless communication system including an application layer, a MAC layer, and a physical (PHY) layer is disclosed. The MAC header accommodates time-delay insensitive data transfer between devices located in the network. The MAC header finds particular benefits in short range networks that transfer high definition (HD) video between components. One embodiment of the invention comprises a method of transferring data in a wireless communication network for uncompressed video including fragmenting the data into a plurality of data packets; appending a PHY header to at least one of the data packets to form a MAC frame; setting a field in the PHY header to indicate that the packets do not contain audio video (A/V) data; and transmitting the MAC frame to another device in the wireless communication network.
    • 公开了一种使用包括应用层,MAC层和物理(PHY)层的无线通信系统的介质访问控制(MAC)报头的系统和方法。 MAC报头适应位于网络中的设备之间的时延不敏感数据传输。 MAC标头在短距离网络中发现在组件之间传输高清(HD)视频的特殊优势。 本发明的一个实施例包括在用于未压缩视频的无线通信网络中传送数据的方法,包括将数据分段成多个数据分组; 将PHY报头附加到所述数据分组中的至少一个以形成MAC帧; 设置PHY报头中的一个字段以指示分组不包含音频视频(A / V)数据; 以及将所述MAC帧发送到所述无线通信网络中的另一设备。