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    • 31. 发明授权
    • Secondary link power control in a wireless communication network
    • 无线通信网络中的二次链路功率控制
    • US07738901B2
    • 2010-06-15
    • US10788568
    • 2004-02-27
    • Shiau-He Shawn TsaiYoung C. YoonTao WuAnthony C. K. Soong
    • Shiau-He Shawn TsaiYoung C. YoonTao WuAnthony C. K. Soong
    • H04B7/00
    • H04W28/18H04W52/16H04W52/325H04W52/36H04W52/40
    • A communication transceiver transmits a power-controlled first signal responsive to received power control commands and transmits one or more additional signals at variable power gains relative to the transmit power of the first signal based on reception quality feedback received for the additional signals. Thus, a mobile station may transmit a traffic channel at a variable power gain relative to its pilot signal power and vary that gain responsive to reception quality feedback received by it for the traffic signal. Of course, the mobile station may float more than one traffic channel using variable gains and may use different variable gains for each one. Further, the mobile station may float one or more non-pilot channels relative to the pilot or relative to another channel, while transmitting one or more fixed gain channels. Similar variable power gain may be employed at network base stations for forward link signals.
    • 通信收发机响应于接收到的功率控制命令发送功率受控的第一信号,并基于为附加信号接收的接收质量反馈,以相对于第一信号的发射功率的可变功率增益发射一个或多个附加信号。 因此,移动台可以以相对于其导频信号功率的可变功率增益来发送业务信道,并响应于其为业务信号收到的接收质量反馈来改变该增益。 当然,移动台可以使用可变增益浮动多于一个业务信道,并且可以为每一个使用不同的可变增益。 此外,移动台可以在发送一个或多个固定增益信道的同时相对于导频或相对于另一个信道漂浮一个或多个非导频信道。 在网络基站可以采用类似的可变功率增益用于前向链路信号。
    • 33. 发明授权
    • Radio link management based on retransmission request performance
    • 基于重传请求性能的无线链路管理
    • US07469146B2
    • 2008-12-23
    • US10889554
    • 2004-07-12
    • Anthony C. K. SoongTao WuThawatt GopalYoung C. YoonShiau-He Shawn Tsai
    • Anthony C. K. SoongTao WuThawatt GopalYoung C. YoonShiau-He Shawn Tsai
    • H04Q7/20
    • H04W28/18H04L1/0625H04W52/16H04W52/325H04W52/36H04W52/40
    • A wireless communication network receives packet data transmissions from a mobile station, tracks the occurrence of retransmission requests sent to the mobile station responsive thereto, and modifies the radio link assignments for the mobile station based at least in part on said tracking. For example, a base station controller may be configured to manage the active set of a mobile station based on the number and/or frequency of NACK messages sent by the radio base stations in the mobile station's active set(s) responsive to packet data transmissions from the mobile station. The ACK/NACK response of a radio base station to mobile station transmissions may be used to detect link imbalance, identify poor reverse link channels, etc. The base station controller can add or change radio links based on the ACK/NACK response to improve reverse link performance, trigger voice call handoff, correct link imbalance, etc.
    • 无线通信网络从移动站接收分组数据传输,响应于此而跟踪发送到移动站的重传请求的发生,并且至少部分地基于所述跟踪修改移动台的无线电链路分配。 例如,基站控制器可以被配置为基于移动台的活动组中的无线电基站响应于分组数据传输发送的NACK消息的数量和/或频率来管理移动台的活动集合 从移动台。 无线电基站对移动台传输的ACK / NACK响应可用于检测链路不平衡,识别差的反向链路信道等。基站控制器可以基于ACK / NACK响应来添加或改变无线电链路以改善反向 链路性能,触发语音呼叫切换,链路不平衡等。
    • 34. 发明申请
    • AUXILIARY ACK CHANNEL FEEDBACK FOR CONTROL CHANNELS AND BROADCAST MULTICAST SIGNALS
    • 用于控制信道和广播多播信号的辅助ACK信道反馈
    • US20080259855A1
    • 2008-10-23
    • US11925554
    • 2007-10-26
    • Young C. YoonLi-Hsiang SunSang G. KimSuk Woo Lee
    • Young C. YoonLi-Hsiang SunSang G. KimSuk Woo Lee
    • H04Q7/00
    • H04W72/14H04L1/1657H04L1/1854H04L1/1867H04L1/1896H04W52/04H04W52/12
    • A method for providing an assignment acknowledgement includes receiving a forward link overhead channel message at an access terminal (AT), the overhead channel message including parameters used to indicate which shared control channel (SCCH) message data blocks are to be acknowledged by the AT and the timing for transmitting the assignment acknowledgment. The method further includes receiving a forward link SCCH signal having SCCH data blocks, decoding the SCCH data blocks according to parameters provided by the overhead channel message, detecting a change in access terminal assignment for the AT based upon the SCCH signal, and receiving forward link packet data, or transmitting reverse link data packet at the AT via the assigned data channel. Additional operations include identifying an offset which defines that a certain number of subpackets of the packet data have been transmitted before an assignment acknowledgement is to be transmitted, and transmitting the assignment acknowledgement according to the offset to indicate successful decoding of one of the SCCH data blocks only if the packet data has not been acknowledged
    • 一种用于提供分配确认的方法,包括在接入终端(AT)处接收前向链路开销信道消息,所述开销信道消息包括用于指示哪个共享控制信道(SCCH)消息数据块要被AT确认的参数,以及 发送分配确认的时间。 该方法还包括接收具有SCCH数据块的前向链路SCCH信号,根据由开销信道消息提供的参数对SCCH数据块进行解码,基于SCCH信号检测AT的接入终端分配变化,以及接收前向链路 分组数据或经由分配的数据信道在AT发送反向链路数据分组。 附加操作包括识别限定在要发送分配确认之前已经发送了分组数据的一定数量的子分组的偏移量,并且根据偏移量发送分配确认以指示SCCH数据块之一的成功解码 只有分组数据尚未被确认
    • 36. 发明授权
    • Interference suppression in DS-CDMA systems
    • DS-CDMA系统中的干扰抑制
    • US5790537A
    • 1998-08-04
    • US647731
    • 1996-05-15
    • Young C. YoonHarry Leib
    • Young C. YoonHarry Leib
    • H04B1/7107H04B7/005H04B7/216
    • H04W52/04H04B1/7107
    • A code division multiple access (CDMA) communications system comprises a plurality of CDMA transmitters and at least one reception station coupled together by a communications channel. Each CDMA transmitter encodes a digital signal with a spreading code, each bit of the digital signal being encoded by a spreading code segment comprising a multiplicity of chips. All of the transmitters transmit their respective encoded signals to the reception station asynchronously via the communications channel so as to occupy the same bandwidth. Each receiver receives the combined signals of all of the transmitters and correlates it with a selected one of the spreading code segments to detect the digital signal from the corresponding transmitter. Each receiver uses also the signal-to-noise ratios of detected signals other than its own, with respect to chip delays relative to a reference one of the signals, to suppress multiple access interference (MAI) caused by such other detected signals.
    • 码分多址(CDMA)通信系统包括多个CDMA发射机和由通信信道耦合在一起的至少一个接收站。 每个CDMA发射机用扩展码对数字信号进行编码,数字信号的每一比特由包括多个码片的扩展码段编码。 所有发射机经由通信信道异步地将其各自的编码信号发送到接收站,以便占用相同的带宽。 每个接收机接收所有发射机的组合信号并将其与选定的一个扩展码段相关联,以检测来自相应发射机的数字信号。 每个接收机还相对于相对于参考信号之一的芯片延迟,还使用除了自身以外的检测信号的信噪比来抑制由这种其它检测信号引起的多址干扰(MAI)。