会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 61. 发明授权
    • Method and device for reducing transmission power of uplink signal
    • 降低上行信号传输功率的方法和装置
    • US09326250B2
    • 2016-04-26
    • US14240896
    • 2012-06-06
    • Zhirong LinBo DaiBin YuLu Ren
    • Zhirong LinBo DaiBin YuLu Ren
    • H04L1/00H04W52/14H04L5/00H04W52/34
    • H04W52/146H04L5/0042H04W52/34
    • The present disclosure provides a method for reducing the transmission power of an uplink signal, comprising: performing, by a User Equipment (UE), Component Carrier (CC) grouping on configured uplink CCs; and comparing correspondingly the transmission power of an uplink signal in each CC group with a maximum transmission power configured for the each CC group by an evolved Node B (eNB), and performing a power reduction within the CC group when the comparison result meets an intra-group power reduction condition; and/or comparing the sum of transmission powers of uplink signals in all CC groups with a maximum transmission power configured for the UE by the eNB, when the comparison result meets an inter-group power reduction condition, performing a power reduction between the CC groups. The present disclosure further provides a device for reducing the transmission power of an uplink signal. The technical solution of the present disclosure can improve the covering capability and reliability of the uplink signal in an Inter-band CA scenario, and to improve a utilization rate of a UE's uplink transmission power.
    • 本公开提供了一种用于降低上行链路信号的发送功率的方法,包括:由用户设备(UE)执行在配置的上行链路CC上的分量载波(CC)分组; 并对每个CC组中的上行链路信号的发送功率与由演进节点B(eNB)为每个CC组配置的最大发送功率进行比较,并且当比较结果满足帧内时,执行CC组内的功率降低 - 组功率降低条件; 和/或将所有CC组中的上行链路信号的发送功率之和与eNB配置的最大发送功率进行比较,当比较结果满足组间功率降低条件时,在CC组之间进行功率降低 。 本公开还提供了一种用于降低上行链路信号的发射功率的装置。 本公开的技术方案可以提高带间CA方案中上行链路信号的覆盖能力和可靠性,并提高UE上行传输功率的利用率。
    • 62. 发明授权
    • Base station, terminal, system and method for data transmitting in time-division duplex system
    • 基站,终端,系统和时分双工系统数据传输方法
    • US09313757B2
    • 2016-04-12
    • US14236164
    • 2011-12-21
    • Peng HaoBo DaiBin Yu
    • Peng HaoBo DaiBin Yu
    • H04W56/00H04W72/12H04L1/18H04W72/04H04W72/14
    • H04W56/001H04L1/1854H04L1/1864H04W72/0446H04W72/1278H04W72/14
    • A base station, a terminal, a system and methods for performing data transmission in a Time Division Duplex (TDD) system are disclosed. One of the methods includes: the base station sending an uplink scheduling grant signaling to the terminal on a carrier m, and after receiving uplink data sent by the terminal through a Physical Uplink Shared Channel (PUSCH) on a carrier n, the base station sending an ACK/NACK feedback signaling corresponding to the PUSCH to the terminal on the carrier m; wherein, m≠n; a timing relationship between a subframe by which the base station sends the uplink scheduling grant signaling and/or the ACK/NACK feedback signaling and a subframe where the PUSCH is located is identical with a Hybrid Automatic Repeat Request (HARQ) timing relationship corresponding to an uplink/downlink configuration of the carrier m or the carrier n.
    • 公开了一种在时分双工(TDD)系统中执行数据传输的基站,终端,系统和方法。 方法之一包括:基站向载波m上的终端发送上行调度授权信令,在通过载波n上的物理上行链路共享信道(PUSCH)接收到终端发送的上行数据之后,基站发送 与载波m上的终端对应的PUSCH的ACK / NACK反馈信令; 其中,m≠n; 基站发送上行链路调度授权信令的子帧与/或ACK / NACK反馈信令的子帧与PUSCH所在的子帧之间的定时关系与对应于上行链路调度许可信令的混合自动重复请求(HARQ)定时关系相同 载波m或载波n的上行链路/下行链路配置。
    • 63. 发明申请
    • Method and device for reducing transmission power of uplink signal
    • 降低上行信号传输功率的方法和装置
    • US20140219203A1
    • 2014-08-07
    • US14240896
    • 2012-06-06
    • Zhirong LinBo DaiBin YuLu Ren
    • Zhirong LinBo DaiBin YuLu Ren
    • H04W52/14H04L5/00
    • H04W52/146H04L5/0042H04W52/34
    • The present disclosure provides a method for reducing the transmission power of an uplink signal, comprising: performing, by a User Equipment (UE), Component Carrier (CC) grouping on configured uplink CCs; and comparing correspondingly the transmission power of an uplink signal in each CC group with a maximum transmission power configured for the each CC group by an evolved Node B (eNB), and performing a power reduction within the CC group when the comparison result meets an intra-group power reduction condition; and/or comparing the sum of transmission powers of uplink signals in all CC groups with a maximum transmission power configured for the UE by the eNB, when the comparison result meets an inter-group power reduction condition, performing a power reduction between the CC groups. The present disclosure further provides a device for reducing the transmission power of an uplink signal. The technical solution of the present disclosure can improve the covering capability and reliability of the uplink signal in an Inter-band CA scenario, and to improve a utilization rate of a UE's uplink transmission power.
    • 本公开提供了一种用于降低上行链路信号的发送功率的方法,包括:由用户设备(UE)执行在配置的上行链路CC上的分量载波(CC)分组; 并对每个CC组中的上行链路信号的发送功率与由演进节点B(eNB)为每个CC组配置的最大发送功率进行比较,并且当比较结果满足帧内时,执行CC组内的功率降低 - 组功率降低条件; 和/或将所有CC组中的上行链路信号的发送功率之和与eNB配置的最大发送功率进行比较,当比较结果满足组间功率降低条件时,在CC组之间进行功率降低 。 本公开还提供了一种用于降低上行链路信号的发射功率的装置。 本公开的技术方案可以提高带间CA方案中上行链路信号的覆盖能力和可靠性,并提高UE上行传输功率的利用率。
    • 66. 发明授权
    • System and method for allocating sounding reference signal resource
    • 用于分配探测参考信号资源的系统和方法
    • US08718001B2
    • 2014-05-06
    • US13497297
    • 2010-06-30
    • Rong ZhangPeng HaoBin YuBo JinPeng ZhuYuxin Wang
    • Rong ZhangPeng HaoBin YuBo JinPeng ZhuYuxin Wang
    • H04W72/04
    • H04L1/0027H04L5/0048H04W72/042
    • A system and a method for allocating Sounding Reference Signal (SRS) resources are provided in the present invention, the method includes: an e-Node-B (eNB) allocating a SRS bandwidth with 4n Resource Blocks (RBs) to a terminal, and equally dividing a time domain sequence of a SRS into t portions in the SRS bandwidth; the eNB configuring a time domain RePetition Factor (RPF) used by the UE, and the eNB configuring the UE to use one or more cyclic shifts in L cyclic shifts for each UE; then the eNB notifying the UE of a value of the time domain RPF, a location of a used frequency comb and a used cyclic shift by signaling, wherein n is a positive integer; the RPF satisfies a following condition: 48 × n RPF can be exactly divided by 12; t is an integer by which 48 × n RPF can be exactly divided; and L≦t.
    • 本发明提供了一种用于分配探测参考信号(SRS)资源的系统和方法,该方法包括:向终端分配具有4n个资源块(RB)的SRS带宽的e-Node-B(eNB),以及 将SRS的时域序列等分成SRS带宽中的t个部分; 所述eNB配置所述UE使用的时域RePetition Factor(RPF),所述eNB配置所述UE对每个UE使用L个循环移位中的一个或多个循环移位; 然后eNB通过UE通知信令的时域RPF的值,所使用的频率梳的位置和使用的循环移位,其中n是正整数; RPF满足以下条件:48×n RPF可以精确地除以12; t是48×n RPF可以精确分割的整数; 和L≦̸ t。
    • 67. 发明授权
    • Methods for detecting and/or quantifying a concentration of specific bacterial molecules using bacterial biosensors
    • 使用细菌生物传感器检测和/或定量特异性细菌分子的浓度的方法
    • US08679806B2
    • 2014-03-25
    • US12176942
    • 2008-07-21
    • Kalle LevonBin YuYanxiu Zhou
    • Kalle LevonBin YuYanxiu Zhou
    • C12N13/00C12N11/00G01N33/53C12Q1/00
    • C12Q1/00C07K9/00C07K14/32C07K17/00C12Q1/003G01N33/53G01N33/54353G01N33/5438G01N33/54393G01N33/552
    • A real-time method employing a portable peptide-containing potentiometric biosensor, can directly detect and/or quantify bacterial spores. Two peptides for specific recognition of B. subtilis and B. anthracis Sterne may be immobilized by a polysiloxane monolayer immobilization (PMI) technique. The sensors translate the biological recognition event into a potential change by detecting, for example, B. subtilis spores in a concentration range of 0.08-7.3×104 CFU/ml. The sensing method exhibited highly selective recognition properties towards Bacillus subtilis spores over other kinds of spores. The selectivity coefficients of the sensors for other kinds of spores are in the range of 0-1.0×10−5. The biosensor method not only has the specificity to distinguish Bacillus subtilis spores in a mixture of B. subtilis and B. thuringiensis (thur.) Kurstaki spores, but also can discriminate between live and dead B. subtilis spores. Furthermore, the sensing method can distinguish a Bacillus subtilis 1A700 from other B. subtilis strain. Assay time may be as low as about 5 minutes for a single test. Rapid identification of B. anthracis Sterne and B. anthracis ΔAmes was also provided.
    • 采用便携式含肽电位生物传感器的实时方法可以直接检测和/或定量细菌孢子。 用于特异性识别枯草芽孢杆菌和炭疽芽孢杆菌的两种肽可以通过聚硅氧烷单层固定(PMI)技术来固定。 传感器通过检测例如浓度范围为0.08-7.3×104CFU / ml的枯草芽孢杆菌孢子将生物识别事件转化为潜在的变化。 该感测方法在其他种类的孢子上表现出对枯草芽孢杆菌孢子的高度选择性识别性能。 其他类型孢子传感器的选择性系数在0-1.0×10-5的范围内。 生物传感器方法不仅具有区分枯草芽孢杆菌和苏云金芽孢杆菌(Thur。)Kurstaki孢子的混合物中的枯草芽孢杆菌孢子的特异性,而且可以区分活枯枯病芽孢杆菌孢子和死枯病芽孢杆菌孢子。 此外,感测方法可以将枯草芽孢杆菌1A700与其他枯草芽孢杆菌菌株区分开。 单次测试的测定时间可能低至约5分钟。 还提供了炭疽杆菌和炭疽芽孢杆菌的快速鉴定。