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    • 1. 发明申请
    • EFFICIENT UTILIZATION OF TRANSMISSION GAPS FOR CELL MEASUREMENTS
    • 用于细胞测量的传输GAPS的有效利用
    • WO2007103822A3
    • 2007-11-01
    • PCT/US2007063227
    • 2007-03-02
    • QUALCOMM INCBHATTACHARJEE SUPRATIKAMERGA MESSAYDONG BRIANSINGH GURDEEP
    • BHATTACHARJEE SUPRATIKAMERGA MESSAYDONG BRIANSINGH GURDEEP
    • H04W24/10
    • H04W24/10
    • A terminal communicates with a first wireless network and obtains a list of cells in a second wireless network to measure. The terminal operates in a compressed mode and receives multiple transmission gap pattern sequences for different measurement purposes, e.g., RSSI measurements, BSIC identification, and BSIC re-confirmation. The terminal utilizes each transmission gap for its designated purpose or an alternate purpose. For each transmission gap, the designated purpose for the transmission gap is ascertained, and whether the transmission gap is usable for an alternate purpose is also determined based on at least one criterion. The transmission gap is used for the alternate purpose if the at least one criterion is satisfied and is used for the designated purpose otherwise. For example, a transmission gap designated for RSSI measurement may be used for BSIC identification, a transmission gap designed for BSIC identification or BSIC re-confirmation may be used for RSSI measurement, and so on.
    • 终端与第一无线网络进行通信,并获得第二无线网络中的小区列表以进行测量。 终端以压缩模式操作并且接收用于不同测量目的的多个传输间隙模式序列,例如RSSI测量,BSIC标识和BSIC重新确认。 终端利用每个传输间隙用于其指定目的或替代目的。 对于每个传输间隙,确定传输间隙的指定目的,并且传输间隙是否可用于替代目的也基于至少一个标准来确定。 如果满足至少一个标准并且用于指定目的,则传输间隙用于替代目的。 例如,指定用于RSSI测量的传输间隙可以用于BSIC标识,为BSIC标识设计的传输间隙或BSIC重新确认可以用于RSSI测量,等等。
    • 3. 发明申请
    • SYSTEM SEARCH TO DETECT FOR A WIRELESS COMMUNICATION NETWORK IN A CROWDED FREQUENCY BAND
    • 系统搜索检测无线通信网络中的无线通信网络
    • WO2007022429A2
    • 2007-02-22
    • PCT/US2006032370
    • 2006-08-18
    • QUALCOMM INCUMATT BHUPESH MANOHARLALAMERGA MESSAYMITTAL VINEET
    • UMATT BHUPESH MANOHARLALAMERGA MESSAYMITTAL VINEET
    • H04W48/18
    • H04W48/16
    • Techniques for efficiently performing system search to obtain service from a wireless system as quickly as possible are described. A terminal initially looks for service from a first (e.g., W-CDMA) system. The terminal identifies network(s) in the first system from which service was received in the past and performs acquisition on each network to look for service. If service is not found for the first system, then the terminal performs a search for a second (e.g., GSM) system. If service is found on the second system, then the terminal obtains service from the second system and avoids a frequency scan for the first system. Otherwise, the terminal performs a frequency scan for the first system using the search results for the second system. The terminal may obtain a list of RF channels detected for the second system and may omit these RF channels and possibly some other RF channels around these RF channels from the frequency scan.
    • 描述了用于有效地执行系统搜索以尽可能快地从无线系统获得服务的技术。 终端首先从第一(例如W-CDMA)系统寻找服务。 终端识别过去接收服务的第一系统中的网络,并在每个网络上执行获取以寻找服务。 如果没有为第一系统找到服务,则终端执行对第二(例如,GSM)系统的搜索。 如果在第二系统上找到服务,则终端从第二系统获得服务,并避免对第一系统进行频率扫描。 否则,终端使用第二系统的搜索结果对第一系统执行频率扫描。 终端可以获得针对第二系统检测到的RF信道的列表,并且可以从频率扫描中省略这些RF信道以及可能的这些RF信道周围的一些其它RF信道。
    • 7. 发明专利
    • Position determination in wireless communication system with detection and compensation for repeater
    • 无线通信系统中的位置确定,用于重发器的检测和补偿
    • JP2010226741A
    • 2010-10-07
    • JP2010106706
    • 2010-05-06
    • Qualcomm Incクゥアルコム・インコーポレイテッドQualcomm Incorporated
    • AMERGA MESSAYPATRICK CHRISTOPHERRICK ROLANDROWITCH DOUGLAS NYOUNIS SAED
    • H04W64/00G01S1/00G01S19/25H04B7/26H04W16/26
    • H04W64/00G01S5/0273G01S19/06G01S19/46H04B7/2606
    • PROBLEM TO BE SOLVED: To achieve position determination in a wireless communication system with detection and compensation for repeaters. SOLUTION: In order to detect whether or not a remote terminal is under the coverage of a repeater in a wireless communication network, techniques may be based on (1) a list of base stations expected to be received under the coverage of the repeater and (2) a characterized environment of the repeater or (3) a propagation delay for a transmission received at the remote terminal. Additional ambiguity resulting from being under the coverage of the repeater may be also accounted for or compensated by (1) discarding time measurements from repeated base stations, (2) adjusting processing for position estimates, and (3) computing a series of position estimates based on multiple transmissions received from the same originating base station and selecting the best estimate, or (4) computing a series of position estimates based on multiple transmissions from multiple originating base stations and selecting the best estimate. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:在具有对中继器的检测和补偿的无线通信系统中实现位置确定。 解决方案:为了检测远程终端是否在无线通信网络中的中继器的覆盖范围之下,技术可以基于(1)预期在接收到的覆盖范围内接收的基站的列表 中继器和(2)中继器的特征化环境或(3)在远程终端接收的传输的传播延迟。 由于处于中继器覆盖范围之外的其他模糊性也可以通过(1)从重复的基站中丢弃时间测量来解释或补偿,(2)调整位置估计的处理,以及(3)计算一系列位置估计 在从相同始发基站接收的多个传输上并选择最佳估计,或(4)基于来自多个发起基站的多个传输并选择最佳估计来计算一系列位置估计。 版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • BRPI0708436A2
    • 2011-05-31
    • BRPI0708436
    • 2007-03-02
    • QUALCOMM INC
    • BHATTACHARJEE SUPRATIKAMERGA MESSAYDONG BRIANSINGH GURDEEP
    • H04W24/10
    • A terminal communicates with a first wireless network and obtains a list of cells in a second wireless network to measure. The terminal operates in a compressed mode and receives multiple transmission gap pattern sequences for different measurement purposes, e.g., RSSI measurements, BSIC identification, and BSIC re-confirmation. The terminal utilizes each transmission gap for its designated purpose or an alternate purpose. For each transmission gap, the designated purpose for the transmission gap is ascertained, and whether the transmission gap is usable for an alternate purpose is also determined based on at least one criterion. The transmission gap is used for the alternate purpose if the at least one criterion is satisfied and is used for the designated purpose otherwise. For example, a transmission gap designated for RSSI measurement may be used for BSIC identification, a transmission gap designed for BSIC identification or BSIC re-confirmation may be used for RSSI measurement, and so on.