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    • 2. 发明授权
    • Bidirectional communication system and method for compensating for undesired feedback in the bidirectional communication system
    • 用于补偿双向通信系统中不需要的反馈的双向通信系统和方法
    • US09338304B2
    • 2016-05-10
    • US14125746
    • 2012-03-02
    • Elmar Albert
    • Elmar Albert
    • H04M9/08H04B3/23H04R27/00
    • H04M9/08H04B3/23H04B3/237H04M9/082H04R27/00
    • A bidirectional communication system includes—a first compensating unit to which a first output unit and a first input unit are assigned that is configured to compensate for undesired feedback from the first output unit in the first input unit with generation of first compensation data and at least one second compensating unit that is configured like the first compensating unit and is physically separate from the first compensating unit. The second compensating unit has a second output unit but no input unit is assigned to it. The first compensating unit and the second compensating unit are connected by interfaces via which the first compensation data generated by the first compensating unit can be sent to the second compensating unit so that second compensation data can be generated in the second compensating unit based on the first compensation data.
    • 双向通信系统包括:第一补偿单元,第一输出单元和第一输入单元被分配到该第一补偿单元,该第一补偿单元被配置为补偿来自第一输入单元中的第一输出单元的不期望​​的反馈,并产生第一补偿数据,并且至少 一个第二补偿单元被配置为类似于第一补偿单元并且与第一补偿单元物理分离。 第二补偿单元具有第二输出单元,但没有分配输入单元。 第一补偿单元和第二补偿单元通过接口连接,第一补偿单元生成的第一补偿数据可以经由该接口发送到第二补偿单元,从而可以在第二补偿单元中基于第一补偿单元生成第二补偿数据 赔偿数据。
    • 3. 发明申请
    • BIDIRECTIONAL COMMUNICATION SYSTEM AND METHOD FOR COMPENSATING FOR UNDESIRED FEEDBACK IN THE BIDIRECTIONAL COMMUNICATION SYSTEM
    • 双向通信系统的双向通信系统及其补偿方法
    • US20140185792A1
    • 2014-07-03
    • US14125746
    • 2012-03-02
    • Elmar Albert
    • Elmar Albert
    • H04M9/08
    • H04M9/08H04B3/23H04B3/237H04M9/082H04R27/00
    • The invention relates to a bidirectional communication System (10) with compensation for undesired feedback, comprising—a first compensating unit (CU1) which is paired with a first Output unit (OU1) and a first input unit (IUI) and which is designed to compensate for undesired feedback from the first Output unit (OU1) into the first input unit (IUI) while compiling first compensation data, and—at least one second compensating unit (CU2) which is designed in an analog manner, as is the first compensating unit (CU1), which is physically separated from the first compensating unit (CU1), and which is paired with a second Output unit (OU2) but not with an input unit, however. The invention is characterized in that the first compensating unit (CU1) as well as the at least one second compensating unit (CU2) are each connected to an interface (21, 22) via which the first compensation data compiled by the first compensating unit (CU1) can be transmitted to the at least one second compensating unit (CU2) in order to generate second compensation data in the at least one second compensating unit (CU2) to compensate for the undesired feedback produced in the first input unit (IUI) by the second Output unit (OU2). The invention further relates to a corresponding method for compensating for undesired feedback in such a bidirectional communication System (10).
    • 本发明涉及一种对不需要的反馈进行补偿的双向通信系统(10),包括:与第一输出单元(OU1)和第一输入单元(IUI)配对的第一补偿单元(CU1),其被设计为 在编译第一补偿数据时补偿从第一输出单元(OU1)进入第一输入单元(IUI)的不期望的反馈,以及以模拟方式设计的至少一个第二补偿单元(CU2),如第一补偿 单元(CU1),其与第一补偿单元(CU1)物理分离,并且与第二输出单元(OU2)配对,但不与输入单元配对。 本发明的特征在于,第一补偿单元(CU1)以及至少一个第二补偿单元(CU2)各自连接到接口(21,22),由第一补偿单元( CU1)可被发送到至少一个第二补偿单元(CU2),以便在至少一个第二补偿单元(CU2)中产生第二补偿数据,以通过以下步骤来补偿在第一输入单元(IUI)中产生的不期望的反馈: 第二个输出单元(OU2)。 本发明还涉及用于补偿这种双向通信系统(10)中不期望的反馈的相应方法。
    • 4. 发明授权
    • Payout device for data transmission lines and method for the production of payout device
    • 数据传输线支付设备及生产支付方式
    • US06669126B1
    • 2003-12-30
    • US09868382
    • 2001-11-20
    • Elmar AlbertKuno RoderHelmut Braun
    • Elmar AlbertKuno RoderHelmut Braun
    • B65H1828
    • B65H55/00F41G7/32F42B15/04G02B6/4457Y10S242/92
    • A storage device for data transmission lines, which serve for data transmission between a moving object and a base station, has a spool unit (2) on which a data transmission line (1) is wound in the form of a package of several layers (21) of windings. The windings in each layer are introduced at a maximum tensile stress or force, which is dependent on the modulus of elasticity of thedata transmission line (1). In this way, a creep or flow of the material of data transmission line (1), which is due to the pressure that is produced on the individual layers (21), is reduced or avoided, and a stable ordering of the windings is assured over a long period of time. The pressure of a winding on the layer (21) lying thereunder is less than 0.6 N/mm2, at least in the lower region of the windings. The maximum tensile stress is calculated from the diameters of data transmission line (1) and spool unit (2), the modulus of elasticity of data transmission line (1) and the total number N of layers (21) of the package.
    • 用于数据传输线的存储装置,用于在移动物体和基站之间的数据传输,具有卷轴单元(2),数据传输线(1)以几层的形式被卷绕(2) 21)绕组。 每层中的绕组以最大拉伸应力或力引入,这取决于数据传输线(1)的弹性模量。 以这种方式,减少或避免了由于在各个层(21)上产生的压力导致的数据传输线(1)的材料的蠕变或流动,并且确保了绕组的稳定排序 在很长一段时间内。 至少在绕组的下部区域中,位于其上的层(21)上的绕组的压力小于0.6N / mm 2。 根据数据传输线(1)和卷轴单元(2)的直径,数据传输线(1)的弹性模量和封装层(21)的总数N计算最大拉伸应力。