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    • 1. 发明申请
    • UE TRANSMITTER SHARING
    • UE发射机共享
    • WO2014114273A1
    • 2014-07-31
    • PCT/CN2014/071644
    • 2014-01-28
    • QUALCOMM INCORPORATEDZHU, XipengWANG, NengCHENG, PengHOU, JileiWEI, ChaoDAYAL, PranavKITAZOE, Masato
    • ZHU, XipengWANG, NengCHENG, PengHOU, JileiWEI, ChaoDAYAL, PranavKITAZOE, Masato
    • H04W72/12
    • H04W72/1215
    • Aspects of the present disclosure relate techniques for transmitter sharing by a user equipment (UE) for simultaneous communications between multiple radio access technology (RAT) networks. Certain aspects of the present disclosure provide a method for wireless communications by a UE. The method generally includes sharing a single transmit chain via time divisional multiplexing (TDM) for concurrent communication by at least first and second RAT, optionally negotiating an autonomous denial rate for the UE to deny uplink transmissions in the second RAT, detecting or predicting conflicts between scheduled uplink transmissions in the first RAT and a scheduled transmission in the second RAT, and denying uplink transmissions in the second RAT, subject to the negotiated autonomous denial rate if available, in response to detected or predicted.
    • 本公开的方面涉及用于用户设备(UE)用于多个无线电接入技术(RAT)网络之间的同时通信的发射机共享的技术。 本公开的某些方面提供了一种用于UE的无线通信的方法。 该方法通常包括通过时分复用(TDM)共享单个发射链,用于由至少第一和第二RAT进行并发通信,可选地协商用于UE的自主拒绝速率以拒绝第二RAT中的上行链路传输,检测或预测第二RAT之间的冲突 响应于检测到的或预测的,在第一RAT中的调度的上行链路传输和第二RAT中的调度的传输,以及拒绝第二RAT中的上行链路传输,如果可用,则根据所协商的自主拒绝率。
    • 3. 发明申请
    • REDUCED TRANSMIT POWER FOR WIRELESS RADIO COEXISTENCE
    • 降低发射功率的无线无线电共享
    • WO2012040497A1
    • 2012-03-29
    • PCT/US2011/052813
    • 2011-09-22
    • QUALCOMM INCORPORATEDKADOUS, Tamer AdelHE, XiaoyinDAYAL, PranavMANTRAVADI, AshokWANG, Jibing
    • KADOUS, Tamer AdelHE, XiaoyinDAYAL, PranavMANTRAVADI, AshokWANG, Jibing
    • H04W52/16H04W52/18H04W52/38H04W16/14
    • H04W52/18H04W16/14H04W52/16H04W52/38
    • In user equipments (UEs) with multiple radios, interference between those radios may be reduced by monitoring radio performance and adjusting aggressor transmit power levels to ensure victim and aggressor performance stay within desired operational levels. Various factors may determine when a reduced power approach is desired. Such factors may include aggressor transmit power, received signal strength indicator, victim error rate, throughput loss, coverage impact, etc. Various methods of reducing transmit power may be used. For example, for Long Term Evolution communications, a power headroom report may be altered to adjust a modulation coding scheme and bandwidth allocated for a particular UE. For Bluetooth communications a power control mechanism may be overridden to ensure a device stays within a desired transmit power. A power reduction loop may be employed to monitor a device's transmit power.
    • 在具有多个无线电的用户设备(UE)中,可以通过监视无线电性能并调整攻击者发射功率电平来降低这些无线电之间的干扰,以确保受害者和侵略者的性能保持在期望的操作级别内。 各种因素可能决定何时需要降低功率的方法。 这些因素可能包括攻击者发射功率,接收信号强度指示符,受害者错误率,吞吐量损失,覆盖影响等。可以使用各种降低发射功率的方法。 例如,对于长期演进通信,可以改变功率余量报告以调整为特定UE分配的调制编码方案和带宽。 对于蓝牙通信,可以覆盖功率控制机制以确保设备保持在期望的发射功率内。 可以采用功率降低环路来监视设备的发射功率。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR LTE AND FLO COEXISTENCE BASED ON OVERHEAD INFORMATION SYMBOL (OIS) PROTECTION
    • 基于覆盖信息符号(OIS)保护的LTE和FLO共享的方法与装置
    • WO2011006132A1
    • 2011-01-13
    • PCT/US2010/041614
    • 2010-07-09
    • QUALCOMM INCORPORATEDDAYAL, PranavKADOUS, Tamer A.MANTRAVADI, Ashok
    • DAYAL, PranavKADOUS, Tamer A.MANTRAVADI, Ashok
    • H04W72/12
    • H04W72/1242H04W72/1215
    • Systems and methodologies are described herein that facilitate improved multi-radio coexistence between a Forward Link Only (FLO) radio and at least one non-FLO radio associated with a wireless device. As described herein, Overhead Information Symbol (OIS) transmissions scheduled by a FLO radio (such as transmissions on a dedicated OIS control channel or data transmissions containing embedded OIS information) can be given higher priority than other transmissions that collide with the OIS transmissions. In addition, transmissions scheduled by a non-FLO radio can be prioritized above respective non-OIS transmissions scheduled by a FLO radio, or alternatively non-OIS FLO transmissions can additionally be prioritized above transmissions scheduled by a non-FLO radio according to a measured amount of degradation present at the non-FLO radio. In a specific example described herein involving a Long Term Evolution (LTE) radio, degradation can be determined based on a number of successively missed Physical Uplink Control Channel (PUCCH) transmissions.
    • 本文描述了有助于改进的无前向链路(FLO)无线电与与无线设备相关联的至少一个非FLO无线电之间的多无线电共存的系统和方法。 如本文所描述的,由FLO无线电(诸如专用OIS控制信道上的传输或包含嵌入式OIS信息的数据传输)调度的开销信息符号(OIS)传输可被赋予比与OIS传输相冲突的其它传输更高的优先级。 此外,由非FLO无线电调度的传输可以优先于由FLO无线电调度的相应的非OIS传输,或者替代地,非OIS FLO传输可以另外优先于上述由非FLO无线电根据测量的非FLO无线电调度的传输 在非FLO无线电中出现的退化量。 在涉及长期演进(LTE)无线电的本文描述的具体示例中,可以基于连续丢失的物理上行链路控制信道(PUCCH)传输的数量来确定劣化。