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    • 72. 发明申请
    • Method and Base Station for Sending Uplink Scheduling Grant Control Signaling
    • 用于发送上行链路调度授权控制信令的方法和基站
    • US20120243496A1
    • 2012-09-27
    • US13511480
    • 2010-06-30
    • Peng ZhuPeng HaoBin YuYuqiang ZhangYuxin WangBo Jin
    • Peng ZhuPeng HaoBin YuYuqiang ZhangYuxin WangBo Jin
    • H04W72/04
    • H04W74/006H04L5/001H04L5/0041H04L5/0053H04L5/0092H04W72/1289H04W74/002H04W74/0833
    • A method for sending uplink scheduling grant signaling and a base station, applied in an Advanced Long Term Evolution (LTE-A) system, the method includes: a base station, according to a number of clusters occupied with non-consecutive resource allocation by a Physical Uplink Shared Channel (PUSCH) of a scheduled user equipment in a component carrier, configuring at least one uplink scheduling grant signaling for the user equipment, wherein each uplink scheduling grant signaling indicates an allocation of resource for one or two clusters occupied by the PUSCH; and the base station allocating a Physical Downlink Control Channel (PDCCH) for each uplink scheduling grant signaling, and sending the uplink scheduling grant signaling to the user equipment. The flexibility of the resource allocation in the case of multiple clusters is enhanced, meanwhile the reliability of transmission of the scheduling grant signaling is ensured.
    • 一种在高级长期演进(LTE-A)系统中应用的发送上行链路调度授权信令和基站的方法,该方法包括:基站,根据由不连续资源分配占用的簇数, 在分量载波中的调度用户设备的物理上行链路共享信道(PUSCH),为用户设备配置至少一个上行链路调度许可信令,其中每个上行链路调度许可信令指示由PUSCH占用的一个或两个集群的资源分配 ; 并且基站为每个上行链路调度许可信令分配物理下行链路控制信道(PDCCH),并向用户设备发送上行链路调度许可信令。 在多个集群的情况下,资源分配的灵活性得到增强,同时确保了调度授权信令的传输可靠性。
    • 73. 发明申请
    • SYSTEM AND METHOD FOR ALLOCATING SOUNDING REFERENCE SIGNAL RESOURCE
    • 用于分配声音参考信号资源的系统和方法
    • US20120176999A1
    • 2012-07-12
    • 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 Lg. With the present invention, the number of the SRS resources in a LTE-A system can be efficiently increased.
    • 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Lg。 利用本发明,可以有效地提高LTE-A系统中的SRS资源的数量。
    • 74. 发明申请
    • Inter-node B handover method
    • 节点间切换方法
    • US20120026980A1
    • 2012-02-02
    • US13258130
    • 2009-12-23
    • Yin GaoBin YuPeng HaoPeng Zhu
    • Yin GaoBin YuPeng HaoPeng Zhu
    • H04W36/00
    • H04W36/0077H04W36/08
    • The present invention discloses an inter-Node B handover method, wherein a target eNB sends a Handover Request Acknowledge message including handover reference frequency point information through a source eNB to a user equipment, wherein the handover reference frequency point information includes center frequency point information of an uplink component carrier designated for the user equipment to initiate a random access request. Further, the present invention discloses another inter-Node B handover method, wherein a target eNB orderly arrays center frequency point information of uplink component carriers of a target cell to obtain a first list, the target eNB sends a Handover Request Acknowledge message including the first list through a source eNB to a user equipment, and the user equipment requests a random access according to the center frequency point information of a first uplink component carrier. Through the solution of the present invention, the usage rate of the random access resources for the target eNB can be improved effectively and the conflict of random is accesses can be reduced.
    • 本发明公开了一种节点间切换方法,其中目标eNB通过源eNB向用户设备发送包括切换参考频点信息的切换请求确认消息,其中切换参考频点信息包括 为用户设备指定的用于发起随机接入请求的上行链路分量载波。 此外,本发明公开了另一种节点间切换方法,其中,目标eNB对目标小区的上行链路分量载波进行有序阵列中心频点信息以获得第一列表,目标eNB发送包括第一列的切换请求确认消息 通过源eNB列出到用户设备,并且用户设备根据第一上行链路分量载波的中心频点信息请求随机接入。 通过本发明的解决方案,可以有效地提高目标eNB的随机接入资源的使用率,并且可以减少随机接入的冲突。
    • 76. 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。