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    • 2. 发明申请
    • eMBMS CONTROL PLANE SYNCHRONIZATION
    • eMBMS控制平面同步
    • WO2014007692A1
    • 2014-01-09
    • PCT/SE2012/050766
    • 2012-07-03
    • TELEFONAKTIEBOLAGET L M ERICSSON (PUBL)WANG, XiaolingNORDSTRAND, Ingrid
    • WANG, XiaolingNORDSTRAND, Ingrid
    • H04W76/00
    • H04W76/002H04W72/005H04W76/40H04W84/04
    • The embodiments herein relates to a method in an eNB (401) for handling MBSFN area configuration information. The eNB (401) receives (501, 801), from a MME (410), a MBMS session start request. Based on the received request, the eNB (401) computes a first time for a start of the MBMS session. The first time is a first MCC, update time. The eNB periodically sends (504, 804), from the first time, the configuration information to a user equipment (405). The eNB (401) stops (507, 807) the sending of the configuration information to the user equipment (405) when the MBMS session is a last MBMS session. The eNB (401) sends (508, 808) updated configuration information to the user equipment (405) when the MBMS session is not the last MBMS session. The updated configuration information is updated MBSFN area configuration information.
    • 这里的实施例涉及用于处理MBSFN区域配置信息的eNB(401)中的方法。 eNB(401)从MME(410)接收(501,801)MBMS会话开始请求。 基于接收到的请求,eNB(401)首先计算MBMS会话的开始时间。 第一次是第一个MCC,更新时间。 eNB从第一次周期性地将配置信息(504,804)发送到用户设备(405)。 当MBMS会话是最后的MBMS会话时,eNB(401)停止(507,807)向用户设备(405)发送配置信息。 当MBMS会话不是最后的MBMS会话时,eNB(401)向用户设备(405)发送(508,808)更新的配置信息。 更新的配置信息更新为MBSFN区域配置信息。
    • 4. 发明申请
    • THE SELECTION METHODS OF SELF-POLLINATION AND NORMAL CROSS POLLINATION IN POPULATION, VARIETY OF CROPS
    • 自我污染的选择方法和人口变化的普遍交叉污染
    • WO2005102032A8
    • 2006-08-10
    • PCT/CN2004000657
    • 2004-06-18
    • AGRICULTURAL SCIENCES THE RICEUNIV YANGTZELI XIAOFANGLIU YANZHUOXIAO XINLUO WENYONGCHEN JIANWEIMAO XINGXUEWANG XIAOLINGXING DANYINGZHOU GUIYUAN
    • LI XIAOFANGLIU YANZHUOXIAO XINLUO WENYONGCHEN JIANWEIMAO XINGXUEWANG XIAOLINGXING DANYINGZHOU GUIYUAN
    • A01H1/00A01H1/02A01H1/04
    • A01H1/04
    • The invention relates to the field of crops selection and breeding, particularly relates to the selection methods of self-pollination and normal cross-pollination in population, variety of crops. The selection method includes crossing male parents with female parents to obtain rice populations, wherein the female parents are individual plants which obtained from intercross parents which have different target characters, to produce F1, which is then intercrossed to produce individual plants of separated population, or are separated plants, which is obtained from the inbreeding of individual plant. The male parents are selected from pure line or variety or heterozygous progenies. The method includes five stages of cross, stable self-bred, determination, classification and population improvement. The population and variety have the characteristics of consistency, stability, specificity, farmers' reserving seeds properly, Company's exploiting pedigree seed in a large scale, and also have the characters of highly adaptability, disease resistance and high yielding. The breeding process reduces the dependence on exports' experience, and also adapts for selection for farmers.
    • 本发明涉及作物选择和育种领域,特别涉及种群,作物种类中自花授粉和正常异花授粉的选择方法。 选择方法包括将男性父母与女性父母交叉以获得水稻种群,其中女性父母是从具有不同目标特征的交叉亲本获得的单株植物,以产生F1,然后进行杂交以产生分离种群的单株植物,或 是从单株植物近亲获得的分离植物。 男性父母选自纯系或品种或杂合子代。 该方法包括交叉,稳定自我繁殖,测定,分类和种群改良的五个阶段。 人口和品种具有一致性,稳定性,特异性,农民适当保留种子的特点,公司大规模开发种子种子,具有适应性强,抗病性高,产量高的特点。 繁殖过程减少了对出口经验的依赖,也适应了农民的选择。
    • 6. 发明申请
    • BIOSENSOR METHOD AND SYSTEM BASED ON FEATURE VECTOR EXTRACTION
    • 基于特征向量提取的生物传感器方法和系统
    • WO2008048231A2
    • 2008-04-24
    • PCT/US2006/032772
    • 2006-08-18
    • UT-BATTELLE, LLCGREENBAUM, EliasRODRIGUEZ, Miguel, Jr.QI, HairongWANG, Xiaoling
    • GREENBAUM, EliasRODRIGUEZ, Miguel, Jr.QI, HairongWANG, Xiaoling
    • G01N33/50
    • C12Q1/025
    • A method of biosensor-based detection of toxins includes the steps of providing at least one time-dependent control signal generated by a biosensor in a gas or liquid medium, and obtaining a time-dependent biosensor signal from the biosensor in the gas or liquid medium to be monitored or analyzed for the presence of one or more toxins selected from chemical, biological or radiological agents. The time-dependent biosensor signal is processed to obtain a plurality of feature vectors using at least one of amplitude statistics and a time- frequency analysis. At least one parameter relating to toxicity of the gas or liquid medium is then determined from the feature vectors based on reference to the control signal. A water or air quality sensor system 10 includes photosynthetic organisms as a biosensor in an air or water medium to be monitored or analyzed for the presence of one or more toxins, a detector 12 proximate to the biosensor for measuring a time-dependent biosensor signal from said biosensor, and a processor 30 for analyzing the time-dependent biosensor signal to obtain a plurality of feature vectors using amplitude statistics or time-frequency analysis, wherein the processor determines at least one parameter relating to toxicity of the medium from the feature vectors.
    • 基于生物传感器的毒素检测方法包括以下步骤:在气体或液体介质中提供由生物传感器产生的至少一个时间依赖性控制信号,并从时间依赖性生物传感器信号获得来自 气体或液体介质中的生物传感器将被监测或分析选自化学,生物或放射性试剂的一种或多种毒素的存在。 使用幅度统计和时间 - 频率分析中的至少一个处理时间相关生物传感器信号以获得多个特征向量。 然后基于参考控制信号从特征向量确定至少一个与气体或液体介质的毒性有关的参数。 水或空气质量传感器系统10包括作为生物传感器的光合生物体,其在待监测或分析一种或多种毒素的存在的空气或水介质中;靠近生物传感器的检测器12,用于测量来自生物传感器的时间依赖性生物传感器信号 所述生物传感器和处理器30,用于使用幅度统计或时间 - 频率分析来分析时间相关生物传感器信号以获得多个特征向量,其中处理器根据特征向量确定与介质的毒性有关的至少一个参数。
    • 7. 发明申请
    • BIOSENSOR METHOD AND SYSTEM BASED ON FEATURE VECTOR EXTRACTION
    • 基于特征向量提取的生物传感器方法和系统
    • WO2008048231A3
    • 2008-07-24
    • PCT/US2006032772
    • 2006-08-18
    • UT BATTELLE LLCGREENBAUM ELIASRODRIGUEZ MIGUEL JRQI HAIRONGWANG XIAOLING
    • GREENBAUM ELIASRODRIGUEZ MIGUEL JRQI HAIRONGWANG XIAOLING
    • G06K9/00C12Q1/02
    • C12Q1/025
    • A method of biosensor-based detection of toxins includes the steps of providing at least one time-dependent control signal generated by a biosensor in a gas or liquid medium, and obtaining a time-dependent biosensor signal from the biosensor in the gas or liquid medium to be monitored or analyzed for the presence of one or more toxins selected from chemical, biological or radiological agents. The time-dependent biosensor signal is processed to obtain a plurality of feature vectors using at least one of amplitude statistics and a time- frequency analysis. At least one parameter relating to toxicity of the gas or liquid medium is then determined from the feature vectors based on reference to the control signal. A water or air quality sensor system 10 includes photosynthetic organisms as a biosensor in an air or water medium to be monitored or analyzed for the presence of one or more toxins, a detector 12 proximate to the biosensor for measuring a time-dependent biosensor signal from said biosensor, and a processor 30 for analyzing the time-dependent biosensor signal to obtain a plurality of feature vectors using amplitude statistics or time-frequency analysis, wherein the processor determines at least one parameter relating to toxicity of the medium from the feature vectors.
    • 一种基于生物传感器的毒素检测方法包括以下步骤:在气体或液体介质中提供由生物传感器产生的至少一个时间依赖的控制信号,并从气体或液体介质中的生物传感器获得与时间相关的生物传感器信号 被监测或分析一种或多种选自化学,生物或放射剂的毒素的存在。 处理时间依赖的生物传感器信号以使用幅度统计和时间 - 频率分析中的至少一个来获得多个特征向量。 然后,基于对控制信号的参考,从特征向量确定与气体或液体介质的毒性有关的至少一个参数。 水或空气质量传感器系统10包括光合生物作为待监测或分析的空气或水介质中的生物传感器,用于存在一种或多种毒素;邻近生物传感器的检测器12,用于测量时间依赖性生物传感器信号 所述生物传感器,以及处理器30,其用于使用幅度统计或时间 - 频率分析来分析所述时间依赖性生物传感器信号以获得多个特征向量,其中所述处理器从所述特征向量确定与所述介质的毒性有关的至少一个参数。
    • 9. 发明申请
    • METHOD AND ARRANGEMENT FOR TESTING OF A CAPACITY OF A COMMUNICATION NETWORK
    • 用于测试通信网络容量的方法和布置
    • WO2011025433A9
    • 2011-04-21
    • PCT/SE2010050733
    • 2010-06-28
    • ERICSSON TELEFON AB L MWANG XIAOLINGHEISER FRANZNORDLUND PETER
    • WANG XIAOLINGHEISER FRANZNORDLUND PETER
    • H04W24/06H04B17/00
    • H04W24/06H04B17/391H04W28/26H04W72/1252
    • A method in a communication network node for testing a capacity of a communication network comprising the communication network node is provided. The communication network node communicates with a plurality of user equipments on downlink and uplink channels over an air interface. The communication network node generates (201) artificial load in a traffic model converter unit comprised in the communication network node, using a traffic model. After reserving (202) a number of physical resource blocks to said generated artificial load, said traffic model converter unit in the communication network node sends (203) information about physical resources that are available for real user equipment load to a scheduler within the communication network node. The scheduler schedules (204) physical resource blocks for said real user equipment load.
    • 提供了一种用于测试包括通信网络节点的通信网络的容量的通信网络节点中的方法。 通信网络节点通过空中接口与下行链路和上行链路信道上的多个用户设备进行通信。 通信网络节点使用业务模型,在包含在通信网络节点中的业务模型转换器单元中生成(201)人造负载。 在所述生成的人造负荷中保留(202)多个物理资源块之后,所述通信网络节点中的所述业务模型转换器单元向所述通信网络内的调度器发送关于用于实际用户设备负载的物理资源的信息(203) 节点。 调度器为所述真实用户设备负载调度(204)物理资源块。