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    • 6. 发明授权
    • Adaptive preamble length for continuous connectivity transmission
    • 用于连续连接传输的自适应前导码长度
    • US08514817B2
    • 2013-08-20
    • US11703064
    • 2007-02-05
    • Jussi JaatinenMassimo BertinelliKarri Ranta-aho
    • Jussi JaatinenMassimo BertinelliKarri Ranta-aho
    • H04B7/216
    • H04B7/2656H04L1/0006H04L5/0051H04L5/006H04L5/0085H04L25/0226H04L27/2613H04W52/58
    • The specification and drawings present a new method, system, apparatus and software product for defining an adaptive preamble length of a preamble for a continuous connectivity transmission using a control channel, e.g., a UL (uplink) dedicated physical control channel (DPCCH), for transmitting the preamble. Such a preamble would reduce the accuracy requirement for the initial power setting after a transmission gap and also help the channel estimation and the synchronization of a data channel, e.g., an enhanced dedicated channel (E-DCH). The preamble length can be optimized and defined using a predetermined criterion depending on: a) a degree of fading of a multipath channel which is used for transmitting data on the data channel and/or b) a throughput relative to a nominal throughput in the data channel.
    • 说明书和附图提出了一种新的方法,系统,装置和软件产品,用于使用控制信道(例如UL(上行链路)专用物理控制信道(DPCCH))定义用于连续连续性传输的前导码的自适应前导码长度,用于 传输前导码。 这样的前导码将降低传输间隙之后的初始功率设置的精度要求,并且还有助于数据信道(例如增强型专用信道(E-DCH))的信道估计和同步。 可以使用预定标准来优化和定义前导码长度,具体取决于:a)用于在数据信道上传输数据的多径信道的衰落程度和/或b)相对于数据中的标称吞吐量的吞吐量 渠道。
    • 7. 发明申请
    • Method and apparatus for performing a TFCI reliability check in E-DCH
    • 用于在E-DCH中执行TFCI可靠性检查的方法和装置
    • US20050193315A1
    • 2005-09-01
    • US10782381
    • 2004-02-18
    • Massimo BertinelliEsa Malkamaki
    • Massimo BertinelliEsa Malkamaki
    • H03M13/00H04L1/00
    • H04L1/0061H04L1/0072H04L1/08
    • A method (and equipment) for providing additional error detection for at least some signaling bits (such as TFCI bits) in wireless communication between a sending device (20a) and a receiving device (20b) that both use some error detection method (such as a CRC method) to protect bits conveyed over a protected channel—a channel other than the channel over which the signaling bits are conveyed—by including error detection bits with the protected bits, the method characterized by: a step (31 32) in which the sending device computes the error detection bits based not only on the protected bits, but also based on the signaling bits, and transmits the error detection bits so computed with the protected bits and also transmits the signaling bits, but on another channel. The receiving device (20b) then performs a step (33) of detecting errors based not only on the protected bits but also on the transmitted signaling bits.
    • 一种用于在发送设备(20a)和接收设备(20b)之间的无线通信中的至少一些信令比特(例如TFCI比特)提供附加错误检测的方法(和设备),其使用一些错误检测方法 例如CRC方法),以通过包括具有受保护位的错误检测位来保护通过受保护信道(除信令位所在信道之外的信道)上传送的比特,其特征在于:步骤(3132) 其中发送设备不仅基于受保护的比特而且还基于信令比特来计算错误检测比特,并且发送与被保护比特一起计算的错误检测比特,并且还发送信令比特,但是在另一个信道上发送。 接收装置(20b)然后执行不仅基于受保护的比特而且基于发送的信令比特来检测错误的步骤(33)。