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    • 1. 发明授权
    • Multichannel high-speed data transfer
    • 多通道高速数据传输
    • US5793744A
    • 1998-08-11
    • US690262
    • 1996-07-24
    • Mikko KanervaJuha RasanenHarri JokinenHarri Honkasalo
    • Mikko KanervaJuha RasanenHarri JokinenHarri Honkasalo
    • H04J3/00H04B7/26H04J3/16H04L1/18H04L25/14H04W76/04H04J13/00
    • H04W76/048H04B7/2659H04L1/1874H04L25/14H04W76/025Y02B60/50
    • A digital mobile communication system has a high-speed non-transparent data connection between a transmitting and a receiving party. For the data connection, parallel subchannels, corresponding in number to the nominal data transfer rate, have been allocated on the radio interface. A radio link protocol is responsible for transmitting data over the radio interface, and for acknowledging correct data frames and for retransmitting defective data frames. A transmission buffer buffers the data frames to be transmitted and stores the data frames transmitted until it receives an acknowledgement of successful reception. In order to reduce interference and power consumption, user data is transmitted by using as many of the allocated subchannels as required by the actual user data rate at any one time. On the other allocated subchannels, transmission is interrupted or discontinuous transmission is applied.
    • 数字移动通信系统在发送方和接收方之间具有高速非透明数据连接。 对于数据连接,在无线电接口上分配了与标称数据传输速率相对应的并行子信道。 无线电链路协议负责通过无线电接口发送数据,并且用于确认正确的数据帧和重发缺陷数据帧。 发送缓冲器缓冲要发送的数据帧,并存储发送的数据帧,直到接收到成功接收的确认。 为了减少干扰和功耗,用户数据在任何一个时间通过使用实际用户数据速率所要求的尽可能多的分配子信道来发送。 在其他分配的子信道上,传输中断或不连续传输。
    • 2. 发明授权
    • Multichannel high-speed data transfer
    • 多通道高速数据传输
    • US6052385A
    • 2000-04-18
    • US894397
    • 1997-11-26
    • Mikko KanervaJuha RasanenHarri Jokinen
    • Mikko KanervaJuha RasanenHarri Jokinen
    • H04J3/00H04B7/26H04J3/16H04L1/18H04L25/14H04W76/04
    • H04W76/048H04B7/2659H04L1/1874H04L25/14H04W76/025Y02B60/50
    • A digital mobile communication system has a high-speed non-transparent data connection between a transmitting and a receiving party (MS, TAF). For the data connection, parallel subchannels (ch1-chn), corresponding in number to the nominal data transfer rate, have been allocated on the radio interface. A radio link protocol (RLP) is responsible for transmitting data over the radio interface, and for acknowledging correct data frames and for retransmitting defective data frames. A transmission buffer (63) buffers the data frames to be transmitted and stores the data frames transmitted until it receives an acknowledgement of successful reception. In order to reduce interference and power consumption, user data is transmitted by using as many of the allocated subchannels as required by the actual user data rate at any one time. On the other allocated subchannels, transmission is interrupted or discontinuous transmission is activated.
    • PCT No.PCT / FI96 / 00669 Sec。 371日期:1997年11月26日 102(e)日期1997年11月26日PCT 1996年12月17日PCT公布。 公开号WO97 / 23073 日期1997年6月26日数字移动通信系统在发送和接收方(MS,TAF)之间具有高速不透明数据连接。 对于数据连接,在无线电接口上分配了与标称数据传输速率相对应的并行子信道(ch1-chn)。 无线电链路协议(RLP)负责通过无线电接口发送数据,并且用于确认正确的数据帧和重发缺陷数据帧。 发送缓冲器(63)缓冲要发送的数据帧,并存储发送的数据帧,直到它接收到成功接收的确认。 为了减少干扰和功耗,用户数据在任何一个时间通过使用实际用户数据速率所要求的尽可能多的分配子信道来发送。 在其他分配的子信道上,传输中断或不连续传输被激活。
    • 3. 发明授权
    • Asymmetric high-speed data transmission apparatus and method in a mobile communications network
    • 移动通信网络中的非对称高速数据传输设备和方法
    • US06240076B1
    • 2001-05-29
    • US08945387
    • 1998-02-09
    • Mikko KanervaJari HämäläinenHarri Jokinen
    • Mikko KanervaJari HämäläinenHarri Jokinen
    • H04J316
    • H04J3/1682H04B7/2659
    • A mobile communications system and method for use in a high-speed data transmission between a mobile station and a mobile communications network in the mobile communications system based on time division multiple access (TDMA). The mobile communications system is arranged to use a different frequency for a transmitting direction and a receiving direction. The mobile communications system includes a time-slot allocating mechanism arranged to allocate at least two time slots in at least one of the transmitting and the receiving direction for data transmission; a time-slot employing mechanism arranged to employ time-slots asymmetrically so that in the transmitting direction and in the receiving direction a number of the time-slots corresponds to a currently required data transmission rate in each respective direction, the time-slot employing mechanism further arranged to keep allocated ones of the time-slots that are not used for data transmission; and a time-slot selecting mechanism arranged to select ones of the time-slots used for the data transmission in each direction such that even at a maximum timing advance.
    • 一种移动通信系统和方法,用于基于时分多址(TDMA)的移动通信系统中的移动台与移动通信网之间的高速数据传输。 移动通信系统被布置为对于发送方向和接收方向使用不同的频率。 移动通信系统包括时隙分配机构,被配置为在发送和接收方向中的至少一个中分配至少两个时隙用于数据传输; 时隙采用机制被布置为不对称地使用时隙,使得在发送方向和接收方向上,多个时隙对应于每个相应方向上当前所需的数据传输速率,时隙采用机制 进一步设置为保持未用于数据传输的分配的时隙; 以及时隙选择机构,被配置为选择用于每个方向上的数据传输的时隙中的一个,使得即使在最大定时提前。
    • 6. 发明授权
    • Method and arrangement for implementing minimum activity during discontinuous transmission
    • 在不连续传输过程中实现最小活动的方法和布置
    • US07706313B2
    • 2010-04-27
    • US10587820
    • 2004-01-30
    • Benoist SebireHarri Jokinen
    • Benoist SebireHarri Jokinen
    • G08C17/00H04J3/02
    • G10L19/012
    • A method and a device are considered for implementing minimum activity during discontinuous transmission in a telecommunication connection used to carry a service. The service is allowed to involve transmitting upper-level scheduled silence-breaking transmissions at predetermined regular intervals during otherwise silent periods. There is determined (407, 408, 409) a maximum length of a silent period that is longer than the predetermined regular intervals between upper-level scheduled silence-breaking transmissions. A Layer 2 entity of a protocol stack observes (411) the occurrence of silent periods and transmits (412) a dummy block over the telecommunication connection if the length of an observed silent period reaches said maximum length without an upper-level scheduled silence-breaking transmission having been transmitted.
    • 考虑在用于承载服务的电信连接中的不连续传输期间实现最小活动的方法和设备。 允许该服务涉及在其他静默期期间以预定的定期间隔传输上级预定的静音传输。 确定(407,408,409)无声期的最大长度大于上级预定静音断开传输之间的预定规则间隔。 协议栈的二层实体观察(411)无声期的发生,并且如果观察到的静默期的长度达到所述最大长度而没有上位预定的静默断开,则通过电信连接发送(412)虚拟块 传输已被传输。