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    • 5. 发明申请
    • FORWARD LINK POWER CONTROL AT NON-SERVING SECTORS
    • 在非服务部门进行前向链路功率控制
    • WO2005112299A1
    • 2005-11-24
    • PCT/US2005/013813
    • 2005-04-21
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)YOON, YoungVANNITHAMBY, RathTSAI, Shiau-He ShawnSOONG, Anthony
    • YOON, YoungVANNITHAMBY, RathTSAI, Shiau-He ShawnSOONG, Anthony
    • H04B7/005
    • H04W52/40H04B7/0491H04B17/24H04W52/223H04W52/246H04W52/367
    • A method of allocating forward link transmit power to a mobile station that is in soft / softer handover with a serving sector and one or more non-serving sectors comprises receiving channel quality information at the non-serving sectors as reported by the mobile station for the serving sector, and allocating forward link transmit power for the mobile station at the non-serving sectors as a function of the reported channel quality information. For the serving sector non-serving sectors may assume that the reported channel quality information for the serving sector establishes the lower power allocation bound for the mobile station on the assumption that each of them has less favorable radio conditions than the serving sector with respect to the mobile station. Thus, base station transceivers operating as non-serving transmitters with respect to a given mobile terminal may nonetheless determine forward link transmit power allocations for the mobile station using serving sector channel quality information.
    • 向与服务扇区和一个或多个非服务扇区进行软/软切换的移动站分配前向链路发送功率的方法包括:在移动台报告的非服务扇区处接收信道质量信息, 并且根据报告的信道质量信息为非服务扇区的移动站分配前向链路发送功率。 对于服务扇区,非服务扇区可以假设所报告的服务扇区的信道质量信息建立对移动台的限制的较低功率分配,假设它们中的每一个具有比服务扇区相对于 移动台。 因此,相对于给定移动终端操作为非服务发射机的基站收发机可以使用服务扇区信道质量信息确定移动台的前向链路发射功率分配。
    • 9. 发明申请
    • COMMON RATE CONTROL COMMAND GENERATION
    • 通用速率控制命令生成
    • WO2006026079A1
    • 2006-03-09
    • PCT/US2005/028055
    • 2005-08-08
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)VANNITHAMBY, RathCHEN, Wanshi
    • VANNITHAMBY, RathCHEN, Wanshi
    • H04Q7/38H04B7/26
    • H04W28/22
    • A method of Common Rate Control (CRC) command generation considers status bits returned by mobile stations subject to CRC. The status bits from each mobile station, e.g., the Mobile station Status Indication Bits (MSIBs) defined by Release D of the IS-2000 standards, indicate whether the mobile station is capable of increasing its reverse link data rate, and may additionally indicate whether the mobile station has enough data for transmission to warrant a higher rate. Regardless, the status bits indicate how many in a group of mobile stations are capable of increasing their reverse link rates. Thus, a base station's command generation logic can take advantage of the additional knowledge gained from the status bits when generating CRC commands.
    • 公共速率控制(CRC)命令生成的方法考虑由CRC进行的移动台返回的状态位。 来自每个移动站的状态位,例如由IS-2000标准的版本D定义的移动站状态指示位(MSIB)指示移动站是否能够增加其反向链路数据速率,并且还可以指示是否 移动台具有足够的传输数据以保证更高的速率。 无论如何,状态位表示一组移动台中有多少能够增加其反向链路速率。 因此,当产生CRC命令时,基站的命令生成逻辑可以利用从状态位获得的附加知识。
    • 10. 发明申请
    • RATE ADAPTATION OF WIRELESS COMMUNICATION CHANNELS
    • 无线通信信道速率调整
    • WO2005055506A1
    • 2005-06-16
    • PCT/US2004/037997
    • 2004-10-29
    • TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)DUAN, LongSAVAS, AlpaslanCHEN, WanshiSHAHIDI, RezaHULTEN, JoakimVANNITHAMBY, Rath
    • DUAN, LongSAVAS, AlpaslanCHEN, WanshiSHAHIDI, RezaHULTEN, JoakimVANNITHAMBY, Rath
    • H04L1/00
    • H04L1/0002H04L1/0017H04L1/0023H04W52/04
    • A wireless communication network manages variable data rate communication channels using both short-term data rate adaptation and longer-term resource allocation adjustment. For example, an exemplary base station system may track the actual transmit power being used to transmit a given communication channel on a per frame basis, or faster, and use that tracked value to infer changing channel conditions, e.g., for a given current data rate, higher power indicates poorer channel conditions and lower power indicates better channel conditions. Additionally, or alternatively, channel quality information reported by a receiving mobile station can be used. Regardless, relatively fast data rate changes can be made responsive to monitoring the channel conditions, while retaining the communication resource allocation for the channel. Over the longer term, however, the allocation itself can be changed, e.g., increased or decreased, depending on whether the channel is being efficiently utilized.
    • 无线通信网络使用短期数据速率适配和长期资源分配调整来管理可变数据速率通信信道。 例如,示例性基站系统可以跟踪用于以每帧为基础或更快地发送给定通信信道的实际发射功率,并且使用该跟踪值来推断出改变的信道条件,例如对于给定的当前数据速率 ,较高的功率表示较差的信道条件,较低功率表示较好的信道条件。 另外或者可以使用由接收移动台报告的信道质量信息。 无论如何,可以在保持通道的通信资源分配的同时,监视通道状况来响应相对较快的数据速率变化。 然而,从长远来看,分配本身可以根据信道是否被有效地利用而改变,例如增加或减少。