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    • 1. 发明授权
    • Redundant media packet streams
    • 冗余媒体包流
    • US08411679B2
    • 2013-04-02
    • US13152815
    • 2011-06-03
    • Aidan WilliamsAndrew White
    • Aidan WilliamsAndrew White
    • H04L12/56
    • H04L65/60H04L47/50H04L47/564H04L49/90H04L49/901H04L65/4076H04L65/4092H04L65/602H04L65/604H04L69/14H04N21/4392
    • This invention concerns the transmitting and receiving of digital media packets, such as audio and video channels and lighting instructions. In particular, the invention concerns the transmitting and receiving of redundant media packet streams. Samples are extracted (556) from a first (904) and second (906) media packet stream. The extracted samples are written to a buffer (910) based on the output time of each sample (556). Extracted samples having the same output time are written to the same location in the buffer. Both media packet streams are simply processed all the way to the buffer without any particular knowledge that one of the packet streams is actually redundant. This simplifies the management of the redundant packet streams, such as eliminating the need for a “fail-over” switch and the concept of an “active stream”, The location is the storage space allocated to store one sample. The extracted sample written to the location may be written over another extracted sample from a different packet stream previously written to the location. These extracted samples written to the same location may be identical.
    • 本发明涉及诸如音频和视频信道以及照明指令的数字媒体分组的发送和接收。 特别地,本发明涉及发送和接收冗余媒体分组流。 从第一(904)和第二(906)媒体分组流中提取样本(556)。 提取的样本基于每个样本的输出时间(556)被写入缓冲器(910)。 具有相同输出时间的提取样本被写入缓冲器中的相同位置。 两个媒体分组流都被简单地处理到缓冲器,而没有任何特定的知识,一个分组流实际上是冗余的。 这简化了冗余数据包流的管理,例如不需要故障切换交换机和活动流的概念。位置是分配用于存储一个样本的存储空间。 写入位置的提取样本可以从先前写入该位置的不同分组流中写入另一提取样本。 写入相同位置的这些提取的样本可能是相同的。
    • 3. 发明授权
    • Redundant media packet streams
    • 冗余媒体包流
    • US07978696B2
    • 2011-07-12
    • US12308168
    • 2007-05-17
    • Aidan WilliamsAndrew White
    • Aidan WilliamsAndrew White
    • H04L12/56
    • H04L65/60H04L47/50H04L47/564H04L49/90H04L49/901H04L65/4076H04L65/4092H04L65/602H04L65/604H04L69/14H04N21/4392
    • This invention concerns the transmitting and receiving of digital media packets, such as audio and video channels and lighting instructions. In particular, the invention concerns the transmitting and receiving of redundant media packet streams. Samples are extracted (556) from a first (904) and second (906) media packet stream. The extracted samples are written to a buffer (910) based on the output time of each sample (556). Extracted samples having the same output time are written to the same location in the buffer. Both media packet streams are simply processed all the way to the buffer without any particular knowledge that one of the packet streams is actually redundant. This simplifies the management of the redundant packet streams, such as eliminating the need for a “fail-over” switch and the concept of an “active stream”. The location is the storage space allocated to store one sample. The extracted sample written to the location may be written over another extracted sample from a different packet stream previously written to the location. These extracted samples written to the same location may be identical.
    • 本发明涉及诸如音频和视频信道以及照明指令的数字媒体分组的发送和接收。 特别地,本发明涉及发送和接收冗余媒体分组流。 从第一(904)和第二(906)媒体分组流中提取样本(556)。 提取的样本基于每个样本的输出时间(556)被写入缓冲器(910)。 具有相同输出时间的提取样本被写入缓冲器中的相同位置。 两个媒体分组流都被简单地处理到缓冲器,而没有任何特定的知识,一个分组流实际上是冗余的。 这简化了冗余分组流的管理,例如不需要“故障切换”开关和“活动流”的概念。 位置是分配用于存储一个样本的存储空间。 写入位置的提取样本可以从先前写入该位置的不同分组流中写入另一提取样本。 写入相同位置的这些提取的样本可能是相同的。
    • 4. 发明申请
    • Use of an autoconfigured namespace for automatic protocol proxying
    • 使用自动配置的命名空间进行自动协议代理
    • US20050076141A1
    • 2005-04-07
    • US10666406
    • 2003-09-19
    • Aidan WilliamsAndrew White
    • Aidan WilliamsAndrew White
    • G06F15/16H04L29/12H04Q20060101
    • H04L29/12066H04L29/12367H04L29/12518H04L61/1511H04L61/2015H04L61/2514H04L61/2571
    • Methods and apparatuses for accessing, via a public network, a device connected to a privately addressed network are disclosed. One method comprises the steps of automatically assigning a globally unique name to the device, which resolves to a gateway of the privately addressed network, automatically associating the globally unique name with a private address of the device, and automatically routing communications comprising the globally unique name to the device based on the private address. The name and the address of the gateway may be registered with a Domain Name System (DNS) in response to a request received from the device. If a communication comprising the globally unique name is received for the device from another device via the Internet, a private address for the device dependent on the globally unique name may be automatically obtained for automatically routing the communication to the device.
    • 公开了通过公共网络访问连接到私有寻址网络的设备的方法和装置。 一种方法包括以下步骤:将全局唯一的名称自动分配给设备,该名称解析为私有寻址网络的网关,将全局唯一名称与设备的专用地址自动关联,并自动路由包含全局唯一名称的通信 基于私有地址到设备。 响应于从设备接收的请求,可以向域名系统(DNS)注册网关的名称和地址。 如果通过因特网从另一设备接收到包含全球唯一名称的通信,则可以自动获得取决于全局唯一名称的设备的私有地址,以便将通信自动路由到设备。
    • 7. 发明申请
    • Redundant Media Packet Streams
    • 冗余媒体分组流
    • US20110264966A1
    • 2011-10-27
    • US13152815
    • 2011-06-03
    • Aidan WilliamsAndrew White
    • Aidan WilliamsAndrew White
    • G06F11/14G06F15/16
    • H04L65/60H04L47/50H04L47/564H04L49/90H04L49/901H04L65/4076H04L65/4092H04L65/602H04L65/604H04L69/14H04N21/4392
    • This invention concerns the transmitting and receiving of digital media packets, such as audio and video channels and lighting instructions. In particular, the invention concerns the transmitting and receiving of redundant media packet streams. Samples are extracted (556) from a first (904) and second (906) media packet stream. The extracted samples are written to a buffer (910) based on the output time of each sample (556). Extracted samples having the same output time are written to the same location in the buffer. Both media packet streams are simply processed all the way to the buffer without any particular knowledge that one of the packet streams is actually redundant. This simplifies the management of the redundant packet streams, such as eliminating the need for a “fail-over” switch and the concept of an “active stream”, The location is the storage space allocated to store one sample. The extracted sample written to the location may be written over another extracted sample from a different packet stream previously written to the location. These extracted samples written to the same location may be identical.
    • 本发明涉及诸如音频和视频信道以及照明指令的数字媒体分组的发送和接收。 特别地,本发明涉及发送和接收冗余媒体分组流。 从第一(904)和第二(906)媒体分组流中提取样本(556)。 提取的样本基于每个样本的输出时间(556)被写入缓冲器(910)。 具有相同输出时间的提取样本被写入缓冲器中的相同位置。 两个媒体分组流都被简单地处理到缓冲器,而没有任何特定的知识,一个分组流实际上是冗余的。 这简化了冗余分组流的管理,例如不需要“故障转移”交换机和“活动流”的概念。位置是分配用于存储一个样本的存储空间。 写入位置的提取样本可以从先前写入该位置的不同分组流中写入另一提取样本。 写入相同位置的这些提取的样本可能是相同的。
    • 10. 发明申请
    • Transmitting and Receiving Media Packet Streams
    • 传输和接收媒体分组流
    • US20100046383A1
    • 2010-02-25
    • US12308187
    • 2007-05-17
    • Aidan WilliamsAndrew White
    • Aidan WilliamsAndrew White
    • H04J1/16H04L12/28H04L12/56H04J3/22
    • H04L65/60H04L47/50H04L47/564H04L49/90H04L49/901H04L65/4076H04L65/4092H04L65/602H04L65/604H04L69/14H04N21/4392
    • This invention concerns the transmitting and receiving of digital media packets, such as audio and video channels and lighting instructions. The network (104) is comprised of at least a transmitter device (110) and a receiving device (112). The controllers (122) and (126) of these devices handle the exchanging of configuration messages between the devices (110) and (112). Using the invention, the user is not required to manually configure the processor to receive media packet streams. Instead, a controller (126) of a receiving device (112) operates to receive information on a user selection of media channels and automatically configure the processor of the transmitter device. Further, the receiving device (112) is able to receive media channels using both unicast and multicast protocols. Media channels can be given textual labels which are unique on the unique (104) and easily identify to the user the actual source of the media channel. Media channels of different formats to be sent on the same net work simultaneous. Further, redundant media channels are easily accommodated.
    • 本发明涉及诸如音频和视频信道以及照明指令的数字媒体分组的发送和接收。 网络(104)至少包括发射机设备(110)和接收设备(112)。 这些设备的控制器(122)和(126)处理设备(110)和(112)之间的配置消息交换。 使用本发明,用户不需要手动配置处理器来接收媒体分组流。 相反,接收设备(112)的控制器(126)操作以接收关于用户对媒体信道的选择的信息并且自动配置发射机设备的处理器。 此外,接收设备(112)能够使用单播和多播协议来接收媒体信道。 媒体频道可以被赋予独特的文本标签(104),并且可以容易地向用户识别媒体频道的实际来源。 不同格式的媒体频道在同一网络上同时发送。 此外,冗余媒体信道容易被容纳。