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    • 2. 发明授权
    • Transport format data transmission
    • 传输格式数据传输
    • US07643448B2
    • 2010-01-05
    • US10534102
    • 2002-11-07
    • Kent PedersenBenoist Sebire
    • Kent PedersenBenoist Sebire
    • H04W4/00
    • H04L1/0009H04L1/0025H04L1/0028H04L1/0039H04L1/0067H04L1/0071H04L1/0072H04L1/0078
    • In a flexible layer one (403) of a GERAN transmitter device, a TFCI, which indicates a particular combination of cyclic redundancy check, channel coding and rate matching, is generated by a TFCI generating process (412) using information from the medium access control layer. The TFCI is coded by a coding process (413), and inserted into the data stream by a TFCI insertion process (414). Each code has more bits than the corresponding TFCI, and identifies uniquely the TFCI. The coded TFCI is spread across the pre-interleaved block with portions placed in fixed positions in each burst. Interleaving is then performed by an interleaver (411). The coded TFCI used with a half-rate channel is the central segment of the coded TFCI used in the corresponding full-rate channel. The additional loss is so small as to be insignificant, but the FER performance is significantly improved, compared to using the full-rate codes, as a result of the increased payload of the content data bits. In half-rate mode, the amount of coded TFCI data gives rise to a ratio of the performance of the coding of the transport format combination data to the performance of the coded content data which is at a similar level to the ratio in the full-rate mode.
    • 在GERAN发射机设备的灵活层(403)中,通过使用来自媒体访问控制的信息的TFCI生成处理(412)生成指示循环冗余校验,信道编码和速率匹配的特定组合的TFCI 层。 TFCI由编码处理(413)编码,并通过TFCI插入处理(414)插入到数据流中。 每个代码具有比相应的TFCI多的位,并且唯一地识别TFCI。 经编码的TFCI分布在预先交错的块上,每个突发中的部分被置于固定位置。 然后由交织器(411)执行交织。 与半速率信道一起使用的编码TFCI是相应全速率信道中使用的编码TFCI的中心段。 由于内容数据位的有效负载增加,与使用全速率代码相比,额外的损失非常小,因此无法显着提高FER性能。 在半速率模式中,编码的TFCI数据的量导致传输格式组合数据的编码的性能与编码的内容数据的性能的比率与编码的内容数据的性能相当, 速率模式。
    • 3. 发明申请
    • Transport format data transmission
    • 传输格式数据传输
    • US20060176976A1
    • 2006-08-10
    • US10534102
    • 2002-11-07
    • Kent PedersenBenoist Sebire
    • Kent PedersenBenoist Sebire
    • H04L27/20
    • H04L1/0009H04L1/0025H04L1/0028H04L1/0039H04L1/0067H04L1/0071H04L1/0072H04L1/0078
    • In a flexible layer one (403) of a GERAN transmitter device, a TFCI, which indicates a particular combination of cyclic redundancy check, channel coding and rate matching, is generated by a TFCI generating process (412) using information from the medium access control layer. The TFCI is coded by a coding process (413), and inserted into the data stream by a TFCI insertion process (414). Each code has more bits than the corresponding TFCI, and identifies uniquely the TFCI. The coded TFCI is spread across the pre-interleaved block with portions placed in fixed positions in each burst. Interleaving is then performed by an interleaver (411). The coded TFCI used with a half-rate channel is the central segment of the coded TFCI used in the corresponding full-rate channel. The additional loss is so small as to be insignificant, but the FER performance is significantly improved, compared to using the full-rate codes, as a result of the increased payload of the content data bits. In half-rate mode, the amount of coded TFCI data gives rise to a ratio of the performance of the coding of the transport format combination data to the performance of the coded content data which is at a similar level to the ratio in the full-rate mode.
    • 在GERAN发射机设备的灵活层(403)中,通过使用来自媒体访问控制的信息的TFCI生成处理(412)生成指示循环冗余校验,信道编码和速率匹配的特定组合的TFCI 层。 TFCI由编码处理(413)编码,并通过TFCI插入处理(414)插入到数据流中。 每个代码具有比相应的TFCI多的位,并且唯一地识别TFCI。 经编码的TFCI分布在预先交错的块上,每个突发中的部分被置于固定位置。 然后由交织器(411)执行交织。 与半速率信道一起使用的编码TFCI是相应全速率信道中使用的编码TFCI的中心段。 由于内容数据位的有效负载增加,与使用全速率代码相比,额外的损失非常小,因此无法显着提高FER性能。 在半速率模式中,编码的TFCI数据的量导致传输格式组合数据的编码的性能与编码的内容数据的性能的比率与编码的内容数据的性能相当, 速率模式。
    • 9. 发明申请
    • Method, apparatus and computer program providing signaling of zero/full power allocation for high speed uplink packet access (HSUPA)
    • 提供用于高速上行链路分组接入(HSUPA)的零/全功率分配的信令的方法,装置和计算机程序
    • US20060268773A1
    • 2006-11-30
    • US11432980
    • 2006-05-11
    • Karri Ranta-ahoBenoist Sebire
    • Karri Ranta-ahoBenoist Sebire
    • H04Q7/00
    • H04W52/146H04W52/16H04W52/226H04W52/286H04W52/58H04W72/1268
    • A network schedules a mobile station for an uplink packet transmission on a data channel, receives from a mobile station an uplink message on a control channel, determines from the uplink message a desired power for the mobile station to transmit on the data channel, and thereafter transmits to the mobile station a power control message that commands either a zero power allocation or a full power allocation for the scheduled uplink packet transmission. The mobile station receives from the network the power control message, then determines from the power control message whether zero or full power is allocated. If zero power, then the mobile station suspends its transmissions on the data channel until receiving a new power control command for uplink transmissions on the data channel. If full power, the mobile station transmits user data on the data channel without regard to power on a control channel.
    • 网络对数据信道上的上行链路分组传输进行调度,从移动台接收控制信道上的上行链路消息,从上行链路消息中确定移动台在数据信道上发送的期望功率,之后 向移动台发送功率控制消息,其为调度的上行链路分组传输指定零功率分配或全功率分配。 移动台从网络接收功率控制消息,然后从功率控制消息中确定是否分配了零功率或全功率。 如果零功率,则移动台暂停其在数据信道上的传输,直到在数据信道上接收用于上行链路传输的新的功率控制命令。 如果全功率,则移动台在数据信道上发送用户数据,而不考虑控制信道上的电源。