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    • 11. 发明申请
    • DIGITAL BROADCAST RECEIVER CAPACITY SIGNALLING METADATA
    • 数字广播接收机容量信令元数据
    • US20090203326A1
    • 2009-08-13
    • US12030657
    • 2008-02-13
    • Jussi VesmaHarri J. PekonenJani Vare
    • Jussi VesmaHarri J. PekonenJani Vare
    • H04B7/00
    • H04H60/73H04H20/426
    • Embodiments are directed to transmitting receiver-capacity-signalling data that specifies a plurality of receiver capacities to be used for receiving a service. The signalled receiver capacities may include: a type of time interleaver being used and a minimum burst interval between two consequent bursts. The signaled receiver capacities may also specify: how often a physical layer pipe appears in frames, and/or a number of a frame in which a physical layer pipe appears for a first time during a super frame. Embodiments are directed to receiving the receiver-capacity-signalling data and if, based on the received receiver-capacity-signalling data, receiver capacity is sufficient for one or more selected services, performing service discovery and decoding the one or more services. Otherwise, decoding the one or more services may not be performed.
    • 实施例涉及发送指定要用于接收服务的多个接收机容量的接收机容量信令数据。 信号接收器容量可以包括:正在使用的时间交织器的类型和两个后续突发之间的最小突发间隔。 有信号的接收机容量还可以指定物理层管道出现在帧中的频率,和/或物理层管道在超帧期间第一次出现的帧的数量。 实施例涉及接收接收机容量信令数据,并且如果基于所接收的接收机容量信令数据,接收机容量对于一个或多个所选择的服务是足够的,则执行服务发现和解码所述一个或多个服务。 否则,可能不执行对一个或多个服务的解码。
    • 12. 发明申请
    • SYSTEM AND METHOD FOR SCHEDULING AND TRANSFERRING DATA THROUGH A TRANSMISSION SYSTEM
    • 通过传输系统调度和传输数据的系统和方法
    • US20090059887A1
    • 2009-03-05
    • US12132512
    • 2008-06-03
    • Harri J. PekonenJani VareJussi Vesma
    • Harri J. PekonenJani VareJussi Vesma
    • H04J3/00
    • H04J4/00H04H20/72H04L5/0007H04L5/0044H04L5/0048H04L27/2655H04L27/2657
    • A system and method for dynamically dividing the capacity of a fixed time division multiplexing (TDM) frame between physical channels for data transmission. According to various embodiments, a time frequency frame is divided into a plurality of subframes, and each of the plurality of subframes are divided into a plurality of corresponding slots. The plurality of slots are then selectively time shifted such that a defined time shift exists between corresponding slots in each subframe within the time frequency frame. For any slots or slot portions which have been selectively shifted beyond the end of the time frequency frame, such slots or slot portions are cyclically shifted to the beginning of the frame. Service data is then written into the slots of the time frequency frame, and the frame containing the service data can then be transmitted. Initialization and service access processes for a receiver are also provided.
    • 一种用于动态划分用于数据传输的物理信道之间的固定时分复用(TDM)帧的容量的系统和方法。 根据各种实施例,时间频率帧被划分为多个子帧,并且多个子帧中的每一个被划分成多个对应的时隙。 然后,多个时隙被选择性地时移,使得在时间频率帧内的每个子帧中的相应时隙之间存在规定的时移。 对于已选择性地偏移超出时间频率帧结束的任何时隙或时隙部分,这些时隙或时隙部分被循环移位到帧的开头。 服务数据然后被写入时间帧的时隙,然后可以发送包含服务数据的帧。 还提供了接收器的初始化和服务访问过程。
    • 13. 发明授权
    • Digital broadcast receiver capacity signalling metadata
    • 数字广播接收机容量信令元数据
    • US08498262B2
    • 2013-07-30
    • US12030657
    • 2008-02-13
    • Jussi VesmaHarri J. PekonenJani Vare
    • Jussi VesmaHarri J. PekonenJani Vare
    • H04W4/00
    • H04H60/73H04H20/426
    • Embodiments are directed to transmitting receiver-capacity-signalling data that specifies a plurality of receiver capacities to be used for receiving a service. The signalled receiver capacities may include: a type of time interleaver being used and a minimum burst interval between two consequent bursts. The signaled receiver capacities may also specify: how often a physical layer pipe appears in frames, and/or a number of a frame in which a physical layer pipe appears for a first time during a super frame. Embodiments are directed to receiving the receiver-capacity-signalling data and if, based on the received receiver-capacity-signalling data, receiver capacity is sufficient for one or more selected services, performing service discovery and decoding the one or more services. Otherwise, decoding the one or more services may not be performed.
    • 实施例涉及发送指定要用于接收服务的多个接收机容量的接收机容量信令数据。 信号接收器容量可以包括:正在使用的时间交织器的类型和两个后续突发之间的最小突发间隔。 有信号的接收机容量还可以指定物理层管道出现在帧中的频率,和/或物理层管道在超帧期间第一次出现的帧的数量。 实施例涉及接收接收机容量信令数据,并且如果基于所接收的接收机容量信令数据,接收机容量对于一个或多个所选择的服务是足够的,则执行服务发现和解码所述一个或多个服务。 否则,可能不执行对一个或多个服务的解码。
    • 18. 发明申请
    • Digital Broadcast Network Best Effort Services
    • 数字广播网络最佳努力服务
    • US20080285579A1
    • 2008-11-20
    • US11748889
    • 2007-05-15
    • Jani VareJussi VesmaHarri PekonenTommi Auranen
    • Jani VareJussi VesmaHarri PekonenTommi Auranen
    • H04L12/56
    • H04H20/16H04H20/28H04H20/42
    • In accordance with an embodiment, a best-effort service is divided into packets for best-effort digital broadcast transmission. The packets are encapsulated with an encapsulation protocol that uses a packet order defining field. The encapsulated packets are inserted into an unused portion of a slot of a digital broadcast transmission frame. Then, the encapsulated packets are repeatedly inserted into the unused portion of the slot of the digital broadcast transmission frame in a packet-carousel fashion. And the transmission frame is digitally broadcast. In accordance with an embodiment, a digital broadcast transmission is received. Encapsulated packets that have been repeatedly broadcast in a packet-carousel fashion are accessed from a best-effort portion of a digital broadcast transmission frame slot. And a best-effort service is composed from the encapsulated packets by combining the encapsulated packets in an order based on a packet order defining field of the encapsulated packets.
    • 根据实施例,尽力而为的服务被分成用于尽力而为的数字广播传输的分组。 数据包被封装使用封装协议,使用数据包顺序定义字段。 封装的分组被插入数字广播传输帧的时隙的未使用部分。 然后,封包的数据包以数据包传送方式重复插入数字广播传输帧的时隙的未使用部分。 传输帧数字广播。 根据实施例,接收数字广播传输。 已经以分组轮播方式重复广播的封装分组从数字广播传输帧时隙的尽力而为的部分被访问。 并且通过基于封装分组的分组顺序定义字段的顺序组合封装分组,由封装分组组成尽力服务。
    • 19. 发明授权
    • Providing best effort services via a digital broadcast network using data encapsulation
    • 通过使用数据封装的数字广播网络提供尽力而为的服务
    • US08218559B2
    • 2012-07-10
    • US11748889
    • 2007-05-15
    • Jani VareJussi VesmaHarri PekonenTommi Auranen
    • Jani VareJussi VesmaHarri PekonenTommi Auranen
    • H04L12/28
    • H04H20/16H04H20/28H04H20/42
    • In accordance with an embodiment, a best-effort service is divided into packets for best-effort digital broadcast transmission. The packets are encapsulated with an encapsulation protocol that uses a packet order defining field. The encapsulated packets are inserted into an unused portion of a slot of a digital broadcast transmission frame. Then, the encapsulated packets are repeatedly inserted into the unused portion of the slot of the digital broadcast transmission frame in a packet-carousel fashion. And the transmission frame is digitally broadcast. In accordance with an embodiment, a digital broadcast transmission is received. Encapsulated packets that have been repeatedly broadcast in a packet-carousel fashion are accessed from a best-effort portion of a digital broadcast transmission frame slot. And a best-effort service is composed from the encapsulated packets by combining the encapsulated packets in an order based on a packet order defining field of the encapsulated packets.
    • 根据实施例,尽力而为的服务被分成用于尽力而为的数字广播传输的分组。 数据包被封装使用封装协议,使用数据包顺序定义字段。 封装的分组被插入数字广播传输帧的时隙的未使用部分。 然后,封包的数据包以数据包传送方式重复插入数字广播传输帧的时隙的未使用部分。 传输帧数字广播。 根据实施例,接收数字广播传输。 已经以分组轮播方式重复广播的封装分组从数字广播传输帧时隙的尽力而为的部分被访问。 并且通过基于封装分组的分组顺序定义字段的顺序组合封装分组,由封装分组组成尽力服务。