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    • 1. 发明授权
    • Mapping service components in a broadcast environment
    • 在广播环境中映射服务组件
    • US08774225B2
    • 2014-07-08
    • US12365394
    • 2009-02-04
    • Jani VäreJyrki AlamaunuHarri J. PekonenJussi Vesma
    • Jani VäreJyrki AlamaunuHarri J. PekonenJussi Vesma
    • H04J1/00
    • H04W36/385
    • Services and service components in a broadcast network may be mapped to disparate physical layer transmission channels (PLPs) using logical layer pipes (LLPs). The use of LLPs allows different service components of a single service to be mapped to physical layer transmission channels (PLPs). Accordingly, service components may be shared among different services. Additionally or alternatively, different functions (e.g., different error detection or correction protocols) may be applied to each service components of a service. A receiver may identify services, service components and corresponding PLPs based on LLP identifiers. The receiver may then access and receive desired services and service components through the identified PLPs.
    • 可以使用逻辑层管线(LLP)将广播网络中的服务和服务组件映射到不同的物理层传输信道(PLP)。 使用LLP允许将单个服务的不同服务组件映射到物理层传输信道(PLP)。 因此,服务组件可以在不同的服务之间共享。 附加地或替代地,可以将不同的功能(例如,不同的错误检测或校正协议)应用于服务的每个服务组件。 接收机可以基于LLP标识符识别服务,服务组件和对应的PLP。 然后,接收机可以通过所识别的PLP访问和接收所需的服务和服务组件。
    • 2. 发明申请
    • MAPPING SERVICE COMPONENTS IN A BROADCAST ENVIRONMENT
    • 在广播环境中映射服务组件
    • US20100195633A1
    • 2010-08-05
    • US12365394
    • 2009-02-04
    • Jani VareJyrki AlamaunuHarri J. PekonenJussi Vesma
    • Jani VareJyrki AlamaunuHarri J. PekonenJussi Vesma
    • H04W4/00
    • H04W36/385
    • Services and service components in a broadcast network may be mapped to disparate physical layer transmission channels (PLPs) using logical layer pipes (LLPs). The use of LLPs allows different service components of a single service to be mapped to physical layer transmission channels (PLPs). Accordingly, service components may be shared among different services. Additionally or alternatively, different functions (e.g., different error detection or correction protocols) may be applied to each service components of a service. A receiver may identify services, service components and corresponding PLPs based on LLP identifiers. The receiver may then access and receive desired services and service components through the identified PLPs.
    • 可以使用逻辑层管线(LLP)将广播网络中的服务和服务组件映射到不同的物理层传输信道(PLP)。 使用LLP允许将单个服务的不同服务组件映射到物理层传输信道(PLP)。 因此,服务组件可以在不同的服务之间共享。 附加地或替代地,可以将不同的功能(例如,不同的错误检测或校正协议)应用于服务的每个服务组件。 接收机可以基于LLP标识符识别服务,服务组件和对应的PLP。 然后,接收机可以通过所识别的PLP访问和接收所需的服务和服务组件。
    • 4. 发明申请
    • METHOD AND SYSTEM TO GUARANTEE SERVICE RECEPTION WITHIN BROADCAST SYSTEM
    • 在广播系统中保证服务接收的方法和系统
    • US20090097446A1
    • 2009-04-16
    • US12204750
    • 2008-09-04
    • Harri J. PekonenHeidi HimmanenJani VäreJussi VesmaPekka Talmola
    • Harri J. PekonenHeidi HimmanenJani VäreJussi VesmaPekka Talmola
    • H04W72/12
    • H04L27/2626H04H20/26H04H20/33H04L5/0007H04L27/2602H04L27/2655H04L27/2657H04L27/2662
    • A system and method is provided for ensuring that time for tuning to another RF channel between two TF frames in TF slicing exists while reception with a single hopping-tuner is enabled, and reception for terminals can be guaranteed when transmitting and receiving common services. An additional time for tuning is introduced for TF-sliced services, where the time for tuning can be inserted either before of after the P1 & P2 symbols, and the symbols allocated for the tuning time can also be used for transmission of low-bit rate services. Alternatively, additional padding bits and a guard period can be added in the event that slots or slot fragments exceed a cyclic transfer border upon time shifting. Alternatively still, the tuning time is represented by a complete TF frame, where the complete TF frame carries services other than those in the first TF frame, so that a service is transmitted in every second TF frame and a receiver can perform tuning during the TF frames which do not carry the service.
    • 提供了一种系统和方法,用于确保在使用单跳频调谐器的接收时存在用于在TF切片中的两个TF帧之间调谐到另一RF信道的时间,并且当发送和接收公共服务时可以保证终端的接收。 为TF分片服务引入了一个额外的调谐时间,其中可以在P1和P2符号之前插入调谐时间,并且为调谐时间分配的符号也可以用于传输低比特率 服务。 或者,在时隙或时隙片段在时移时超过循环传输边界的情况下,可以添加额外的填充比特和保护周期。 或者,调谐时间由完整的TF帧表示,其中完整的TF帧承载不同于第一TF帧中的服务的服务,使得在每秒TF帧中发送服务,并且接收机可以在TF期间执行调谐 不携带服务的帧。
    • 6. 发明授权
    • Method and system to guarantee service reception within broadcast system
    • 确保广播系统内服务接收的方法和系统
    • US08213383B2
    • 2012-07-03
    • US12204750
    • 2008-09-04
    • Harri J. PekonenHeidi HimmanenJani VäreJussi VesmaPekka Talmola
    • Harri J. PekonenHeidi HimmanenJani VäreJussi VesmaPekka Talmola
    • H04W4/00H04J3/06H04B1/40H01Q11/12
    • H04L27/2626H04H20/26H04H20/33H04L5/0007H04L27/2602H04L27/2655H04L27/2657H04L27/2662
    • A system and method is provided for ensuring that time for tuning to another RF channel between two TF frames in TF slicing exists while reception with a single hopping-tuner is enabled, and reception for terminals can be guaranteed when transmitting and receiving common services. An additional time for tuning is introduced for TF-sliced services, where the time for tuning can be inserted either before of after the P1 & P2 symbols, and the symbols allocated for the tuning time can also be used for transmission of low-bit rate services. Alternatively, additional padding bits and a guard period can be added in the event that slots or slot fragments exceed a cyclic transfer border upon time shifting. Alternatively still, the tuning time is represented by a complete TF frame, where the complete TF frame carries services other than those in the first TF frame, so that a service is transmitted in every second TF frame and a receiver can perform tuning during the TF frames which do not carry the service.
    • 提供了一种系统和方法,用于确保在使用单跳频调谐器的接收时存在用于在TF切片中的两个TF帧之间调谐到另一RF信道的时间,并且当发送和接收公共服务时可以保证终端的接收。 为TF分片服务引入了一个额外的调谐时间,其中可以在P1和P2符号之前插入调谐时间,并且为调谐时间分配的符号也可以用于传输低比特率 服务。 或者,在时隙或时隙片段在时移时超过循环传输边界的情况下,可以添加额外的填充比特和保护周期。 或者,调谐时间由完整的TF帧表示,其中完整的TF帧承载不同于第一TF帧中的服务的服务,使得在每秒TF帧中发送服务,并且接收机可以在TF期间执行调谐 不携带服务的帧。
    • 7. 发明授权
    • 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
    • US08670372B2
    • 2014-03-11
    • US12132512
    • 2008-06-03
    • Harri J. PekonenJani VäreJussi Vesma
    • Harri J. PekonenJani VäreJussi Vesma
    • H04B7/212
    • 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。
    • 9. 发明授权
    • Physical layer and data link layer signalling in digital video broadcast preamble symbols
    • 数字视频广播前导符号中的物理层和数据链路层信令
    • US08248910B2
    • 2012-08-21
    • US12021864
    • 2008-01-29
    • Tero JokelaJussi VesmaHarri J. Pekonen
    • Tero JokelaJussi VesmaHarri J. Pekonen
    • H04J11/00H04J1/00H04J3/24H04B7/208H04J3/12
    • H04L5/0053H04H60/07H04L1/0057H04L1/0071H04L5/0007
    • Aspects of the invention are directed to physical layer and data link layer signaling in digital video broadcast preamble symbols. Embodiments are directed to distributing physical layer pre-signalling data among preamble symbols. If physical layer data is larger than a predetermined number of preamble symbols, then excess physical layer data is written to data symbols immediately following the preamble symbols in top-down order symbol by symbol or the predetermined number of preamble symbols is increased. If physical layer data is not larger than the predetermined number of preamble symbols such that there is excess preamble symbol space, physical layer pipe 0 data comprising link layer signaling and notification data is carried in the excess preamble symbols or the excess preamble symbols are left empty. Different permutation rules may be used to frequency interleave odd-numbered versus even-numbered orthogonal frequency division multiplexing symbols.
    • 本发明的方面涉及数字视频广播前同步码符号中的物理层和数据链路层信令。 实施例涉及在前导符号之间分配物理层预信令数据。 如果物理层数据大于预定数量的前导码符号,则将多余的物理层数据以符号自上而下的顺序排列在前导码符号之后的数据符号上,或增加预定数目的前导符号。 如果物理层数据不大于预定数量的前导码符号,使得存在超量的前导码符号空间,则包含链路层信令和通知数据的物理层管道0数据在多余的前导码符号中被携带,或者将剩余的前导码符号留空 。 可以使用不同的置换规则来对奇数编号与偶数编号的正交频分复用符号进行频率交织。
    • 10. 发明申请
    • Signalling the Presence of Extension Frames
    • 信号扩展帧的存在
    • US20090196217A1
    • 2009-08-06
    • US12024355
    • 2008-02-01
    • Heidi HimmanenHarri J. PekonenJussi Vesma
    • Heidi HimmanenHarri J. PekonenJussi Vesma
    • H04Q7/00
    • H04L12/56
    • Aspects of the invention are directed to signalling extension frames in a telecommunication system. Extension-frame-signalling data may signal whether one or more extension parts are present in one or more gaps in time between data frames, when the one or more extension parts occur, and one or more durations for the one or more extension parts. The one or more extension parts may occur on the same radio frequencies as the data frames. The extension-frame-signalling data may signal when the one or more extension parts occur by signalling after which of one or more data frames in a super frame the extension parts occur. The one or more durations for the extension parts may be expressed in units of time.
    • 本发明的方面涉及电信系统中的信令扩展帧。 扩展帧信令数据可以指示在一个或多个扩展部分出现时,数据帧之间的一个或多个时间间隔中存在一个或多个扩展部分是否存在一个或多个扩展部分,以及一个或多个扩展部分的一个或多个持续时间。 一个或多个扩展部分可以在与数据帧相同的无线电频率上发生。 扩展帧信令数据可以在通过信令发生一个或多个扩展部分时出现信号,在扩展部分发生超帧中的一个或多个数据帧之后。 扩展部分的一个或多个持续时间可以以时间为单位表示。