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    • 1. 发明申请
    • APPARATUS AND METHOD FOR CONTROLLING REVERSE-LINK DATA TRANSMISSION RATE
    • 用于控制反向链路数据传输速率的装置和方法
    • US20090129270A1
    • 2009-05-21
    • US12357316
    • 2009-01-21
    • Ki Jun KimJong Hoe AnYoung Woo YunSoon Yil KwonCheol Woo You
    • Ki Jun KimJong Hoe AnYoung Woo YunSoon Yil KwonCheol Woo You
    • H04L12/26
    • H04W28/24H04L69/24H04W28/22H04W52/16H04W52/26H04W52/40
    • Apparatus and method for controlling data transmission rate in a wireless communication system during handoff comprises a terminal recognizing an active set comprising a serving base station and at least one non-serving base station with respect to the terminal communicating with the network at a first data transmission rate, receiving a first rate control parameter from the serving base station and a second rate control parameter from the at least one non-serving base station, wherein the first and second rate control parameters are associated with determination of a second data transmission rate of the terminal during the handoff and determining the second data transmission rate in response to the first and the second rate control parameters, wherein the second data transmission rate is one of increased rate, decreased rate and same rate from the first data transmission rate.
    • 用于在切换期间控制无线通信系统中的数据传输速率的设备和方法包括:终端,在第一数据传输时,识别包括服务基站和至少一个非服务基站的终端与所述网络通信 从所述服务基站接收第一速率控制参数和来自所述至少一个非服务基站的第二速率控制参数,其中所述第一和第二速率控制参数与所述至少一个非服务基站的第二数据传输速率的确定相关联 终端,并且响应于第一和第二速率控制参数确定第二数据传输速率,其中第二数据传输速率是从第一数据传输速率增加速率,降低速率和相同速率之一。
    • 3. 发明授权
    • Apparatus and method for controlling reverse-link data transmission rate
    • 用于控制反向链路数据传输速率的装置和方法
    • US08064419B2
    • 2011-11-22
    • US12357316
    • 2009-01-21
    • Ki Jun KimJong Hoe AnYoung Woo YunSoon Yil KwonCheol Woo You
    • Ki Jun KimJong Hoe AnYoung Woo YunSoon Yil KwonCheol Woo You
    • H04W4/00
    • H04W28/24H04L69/24H04W28/22H04W52/16H04W52/26H04W52/40
    • Apparatus and method for controlling data transmission rate in a wireless communication system during handoff comprises a terminal recognizing an active set comprising a serving base station and at least one non-serving base station with respect to the terminal communicating with the network at a first data transmission rate, receiving a first rate control parameter from the serving base station and a second rate control parameter from the at least one non-serving base station, wherein the first and second rate control parameters are associated with determination of a second data transmission rate of the terminal during the handoff and determining the second data transmission rate in response to the first and the second rate control parameters, wherein the second data transmission rate is one of increased rate, decreased rate and same rate from the first data transmission rate.
    • 用于在切换期间控制无线通信系统中的数据传输速率的设备和方法包括:终端,在第一数据传输时,识别包括服务基站和至少一个非服务基站的终端与所述网络通信 从所述服务基站接收第一速率控制参数和来自所述至少一个非服务基站的第二速率控制参数,其中所述第一和第二速率控制参数与所述至少一个非服务基站的第二数据传输速率的确定相关联 终端,并且响应于第一和第二速率控制参数确定第二数据传输速率,其中第二数据传输速率是从第一数据传输速率增加速率,降低速率和相同速率之一。
    • 6. 发明授权
    • Apparatus and method for controlling reverse-link data transmission rate
    • 用于控制反向链路数据传输速率的装置和方法
    • US07551584B2
    • 2009-06-23
    • US10794744
    • 2004-03-05
    • Ki Jun KimJong Hoe AnYoung Woo YunSoon Yil KwonCheol Woo You
    • Ki Jun KimJong Hoe AnYoung Woo YunSoon Yil KwonCheol Woo You
    • H04W4/00
    • H04W28/24H04L69/24H04W28/22H04W52/16H04W52/26H04W52/40
    • Apparatus and method for controlling data transmission rate in a wireless communication system during handoff comprises a terminal recognizing an active set comprising a serving base station and at least one non-serving base station with respect to the terminal communicating with the network at a first data transmission rate, receiving a first rate control parameter from the serving base station and a second rate control parameter from the at least one non-serving base station, wherein the first and second rate control parameters are associated with determination of a second data transmission rate of the terminal during the handoff and determining the second data transmission rate in response to the first and the second rate control parameters, wherein the second data transmission rate is one of increased rate, decreased rate and same rate from the first data transmission rate.
    • 用于在切换期间控制无线通信系统中的数据传输速率的设备和方法包括:终端,在第一数据传输时,识别包括服务基站和至少一个非服务基站的终端与所述网络通信 从所述服务基站接收第一速率控制参数和来自所述至少一个非服务基站的第二速率控制参数,其中所述第一和第二速率控制参数与所述至少一个非服务基站的第二数据传输速率的确定相关联 终端,并且响应于第一和第二速率控制参数确定第二数据传输速率,其中第二数据传输速率是从第一数据传输速率增加速率,降低速率和相同速率之一。
    • 9. 发明授权
    • Determining useable combinations of variables for transmitting a subpacket of an encoder packet
    • 确定用于发送编码器分组的子分组的变量的可用组合
    • US07324436B2
    • 2008-01-29
    • US10422726
    • 2003-04-25
    • Cheol Woo YouKi Jun KimYoung Woo YunSoon Yil Kwon
    • Cheol Woo YouKi Jun KimYoung Woo YunSoon Yil Kwon
    • H04J11/00
    • H04J13/18H04J13/0048H04L1/0003H04L1/0009H04L1/1819
    • A method of determining useable combinations of variables for transmitting a subpacket of an encoder packet in a communication system is disclosed. First, an arbitrary combination from a plurality of all combinations of transmission variables is selected based on a number of currently useable Walsh codes and channel environment. Next, an arbitrary MPR is determined based on a number of useable encoder packet bits, a number of useable slots, and the number of currently useable Walsh codes, all of which belong to the selected arbitrary combination transmission variables. Thereafter, a final MPR, which is the smallest one of MPR values of a MPR set that corresponds to the number of useable encoder packet bits and the number of useable slots, is determined, and a final number of Walsh codes is calculated based on the number of useable encoder packet bits, the number of useable slots, and the determined final MPR. Finally, one or more useable combinations of variables are determined based on the final number of Walsh codes.
    • 公开了一种确定用于在通信系统中发送编码器分组的子分组的变量的可用组合的方法。 首先,基于当前可用的沃尔什码和信道环境的数量来选择来自多个传输变量的所有组合的任意组合。 接下来,基于所使用的编码器分组位数,可用时隙的数量和当前可用的沃尔什码的数量来确定任意MPR,所有这些都属于所选择的任意组合传输变量。 此后,确定与对应于可用编码器分组比特数和可用时隙数量的MPR组的MPR值中最小的MPR的最终MPR,并且基于 可用编码器分组比特的数量,可用时隙的数量以及所确定的最终MPR。 最后,根据沃尔什码的最终数量确定一个或多个可用的变量组合。