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    • 5. 发明申请
    • METHOD AND TELECOMMUNICATION TERMINAL FOR AUTOMATED DATA COMPRESSION IN RADIO COMMUNICATION SYSTEMS
    • 用于无线通信系统中自动数据压缩的方法和电信终端
    • WO0101651A3
    • 2001-05-17
    • PCT/DE0001752
    • 2000-05-30
    • SIEMENS AGNASSHAN MARKUS
    • NASSHAN MARKUS
    • H03M7/30H04L12/58H04L29/06
    • H03M7/30
    • The invention relates to a method for transmitting data, in particular, data in a file which is attached to a message in a communication system, in particular, a radio communication system (1), from a transmitter to a receiver. The invention also relates to a telecommunication terminal (4), comprising at least one transmitter and at least one receiver for transmitting data, in particular, in a file which is attached to a message, from a transmitter to a receiver and comprising a processor and a memory for data and programmes. The invention is characterised in that prior to transmission, non-compressed file attachments (2) are checked to verify if compression has taken place and the non-compressed file attachments (2) are subjected to a compression process (3).
    • 本发明涉及一种方法,用于从发射机在无线通信系统(1)发送数据,该数据被附加到任何其他消息,特别是文件的,在通信系统中,特别是涉及一种接收器,以及具有至少一个发射机的电信终端(4) 以及至少一个接收器,用于从发送器向具有处理器和用于数据和程序的存储器的接收器发送数据,特别是附加到另一消息的文件。 本发明的特征在于未压缩文件附件(2)检查用于发送和附接(2)至(3)进行的压缩处理的未压缩的文件之前,已知的压缩。
    • 7. 发明申请
    • AIR INTERFACE FOR TELECOMMUNICATIONS SYSTEMS WITH CORDLESS TELECOMMUNICATIONS BETWEEN MOBILE AND/OR STATIONARY TRANSMITTING/RECEIVING DEVICES
    • 空中接口与移动之间的和/或固定发射/接收器无线电信电信系统
    • WO0002401A2
    • 2000-01-13
    • PCT/DE9901909
    • 1999-06-30
    • SIEMENS AGKUNZ ALBRECHTNASSHAN MARKUSJARBOT LUTZLANDENBERGER HOLGER
    • KUNZ ALBRECHTNASSHAN MARKUSJARBOT LUTZLANDENBERGER HOLGER
    • H04B7/26H04L1/00H04W92/06H04Q7/00
    • H04L1/0025H04L1/0007
    • The aim of the invention is to improve the performance of physical channels in telecommunications systems with cordless telecommunications between mobile and/or stationary transmitting/receiving devices in accordance with the channel data transmission rate, the system environment, the system usage and the distance between the transmitting/receiving devices. The performance of said physical channels is to be improved in such a way that no circuit modifications need to be made to the transmitters and/or the receivers in the transmitting/receiving devices. To this end, the invention provides for an air interface with a variable number of NPILOT bits, NTPC-bits and NTFCI bits. The number of NPILOT bits, NTPC-bits and NTFCI bits can be adapted or optimised, especially during an active or passive telecommunications connection between the mobile and/or stationary transmitting/receiving devices of the telecommunications system, by means of control elements, for example by appropriate "layer 2/3" signalling, for example via the DPDCH channel.
    • 为了提高性能和使用移动和/或静止的发送之间的无线电信电信系统中的物理信道“性能” /响应于所述信道的数据传输率,系统环境,系统负载和发射器/接收器装置之间的距离的接收设备,以便 没有电路改变到发射器和/或接收器中的发送要求/接收装置,空中接口提出,其中期间NPILOT比特,NTPC比特和NTFCI的比特数是在每种情况下变量,特别是 有源或无源的电信移动和/或静止的发送之间的链路/接收电信系统的设备,分别NPILOT比特,NTPC比特和NTFCI的比特数,通过控制装置,包括 和“层3”信令(“层2/3” - 信号传导),例如, - 通过合适的“层-2” 经由DPDCH信道自适应地改变和优化。