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    • 4. 发明申请
    • SUDAC, USER EQUIPMENT, BASE STATION AND SUDAC SYSTEM
    • SUDAC,用户设备,基站和SUDAC系统
    • WO2016030394A2
    • 2016-03-03
    • PCT/EP2015069474
    • 2015-08-25
    • FRAUNHOFER GES ZUR FÖRDERUNG DER ANGEWANDTEN FORSCHUNG E V
    • BREILING MARCOBURKHARDT FRANKROHDE CHRISTIANNG WING KWANSCHOBER ROBERT
    • H04B7/155
    • H04B7/15542H04B7/15592H04W52/0235H04W72/0406H04W72/0453H04W74/0833Y02D70/00Y02D70/1222Y02D70/1262Y02D70/1264Y02D70/142Y02D70/144Y02D70/168Y02D70/21Y02D70/22Y02D70/26Y02D70/446
    • A SUDAC comprises a first wireless communication interface, a second wireless communication interface and a processor. The first wireless communication interface is configured for using ultra-high frequency in order to establish at least one backend communication link with a base station. The second wireless communication interface is configured for using extremely-high frequency in order to establish at least one frontend communication link with a user equipment. The processor is configured for at least partially forwarding a user information signal received via the frontend communication link as a communication signal to be transmitted via the backend communication link while frequency converting the extremely-high frequency to the ultra-high frequency or for forwarding at least partially the communication signal received via the backend communication link as the user information signal to be transmitted via the frontend communication link while frequency converting the ultra-high frequency to the extremely- high frequency. The processor is further configured for extracting control information from the user information signal and for controlling forward parameters of the first or the second wireless communication interface based on the control information. The forward parameters relate to at least one of a time, a frequency, a space or a code resource of the backend communication link or the frontend communication link. The processor is configured for frequency converting the user information signal received at extremely-high frequency to the communication signal at the ultra-high frequency and for frequency converting the communication signal at the extremely-high frequency to the communication signal at the ultra-high frequency or the SUDAC comprises an analog-to- digital converter configured for digitizing the user information signal received at extremely- high frequency and a digital-to-analog converter configured for analogizing a digitalized communication signal to obtain the communication signal at the ultra-high frequency, wherein the processor is configured for generating the digitalized communication signal based on the digitalized user information signal.
    • SUDAC包括第一无线通信接口,第二无线通信接口和处理器。 第一无线通信接口被配置为使用超高频率来建立与基站的至少一个后端通信链路。 第二无线通信接口被配置为使用极高频率来建立与用户设备的至少一个前端通信链路。 处理器被配置用于至少部分地转发经由前端通信链路接收的用户信息信号作为要经由后端通信链路发送的通信信号,同时将极高频率转换到超高频率或者用于至少转发 部分地将经由后端通信链路接收到的通信信号作为经由前端通信链路发送的用户信息信号,同时将超高频率频率转换为极高频率。 处理器还被配置用于从用户信息信号中提取控制信息并且用于基于控制信息来控制第一无线通信接口或第二无线通信接口的正向参数。 正向参数涉及后端通信链路或前端通信链路的时间,频率,空间或代码资源中的至少一个。 处理器被配置用于将以极高频率接收的用户信息信号频率转换成超高频率的通信信号,并且用于将处于极高频率的通信信号频率转换成处于超高频率的通信信号 或SUDAC包括被配置用于数字化以极高频率接收的用户信息信号的模拟数字转换器和被配置用于模拟数字化通信信号以获得超高频率的通信信号的数字 - 模拟转换器 其中所述处理器被配置用于基于所述数字化的用户信息信号来生成所述数字化的通信信号。
    • 6. 发明申请
    • METHOD AND DEVICE FOR CONTROLLING THE BEHAVIOR OF SYSTEMS
    • 用于系统行为管理的方法和设备
    • WO2015007678A3
    • 2015-05-14
    • PCT/EP2014065018
    • 2014-07-14
    • FRAUNHOFER GES ZUR FÖRDERUNG DER ANGEWANDTEN FORSCHUNG E VBRANDENBURGISCHE TECH UNIVERSITÄT COTTBUS
    • WOLFF MATTHIASRÖMER RONALDTSCHÖPE CONSTANZEHENTSCHEL DIETER
    • G05B13/02G06N7/00
    • G05B13/02G06N5/02
    • The invention relates to a device and a method for controlling actuators of a system which has the actuators and sensors. The device comprises an interpreter for interpreting an analysis result from an analysis of sensor signals of the sensors. A plurality of different interpretation hypotheses which constitute different meanings of the analysis result can be obtained from the analysis result. A behavior controller is designed to supply a reaction to the plurality of different interpretation hypotheses. An articulator is designed to generate an articulation from the reaction, control signals for the actuators being producible from the articulation by means of a synthesizing process. The interpreter is further designed to start the plurality of different interpretation hypotheses and to continue the started interpretation hypotheses using confidences or probabilities. The degrees of confidence and the probabilities are defined by a specified initial state of the system or by a system history.
    • 本发明描述了用于驱动包括致动器和传感器的系统的致动器的设备和方法。 该装置包括解释器,用于解析来自传感器的传感器信号分析的分析结果。 根据分析结果,可以获得多个不同的解释假设,这些假设表示分析结果的不同含义。 行为控制旨在提供对多种不同解释假说的响应。 咬合器被设计成从反应产生咬合,其中致动器的致动信号可以通过合成从咬合产生。 解释器还适用于开始多个不同的解释假说并且使用置信度或概率来继续开始的解释假设。 置信度和概率由系统或过去系统的给定初始状态定义。
    • 8. 发明申请
    • THERMOTROPIC POLYMERS
    • 热致PLASTICS
    • WO2014096222A3
    • 2014-11-13
    • PCT/EP2013077443
    • 2013-12-19
    • QUARZWERKE GMBHFRAUNHOFER GES ZUR FÖRDERUNG DER ANGEWANDTEN FORSCHUNG E V
    • ZILLES JÖRG ULRICHKRUBER DIRKSEEBOTH ARNOMÜHLING OLAFRUHMANN RALF
    • C09K9/02
    • C08L33/14C08L25/14C09K9/02Y10T428/2982
    • Polymer particles having a mean primary particle diameter d50 between 50 nm and 10 pm based on the total weight, containing: A. 10 to 100% by weight of a polymer phase A, obtainable by free-radical copolymerization of an oil-in-water miniemulsion having a monomer mixture as oil phase, containing i) 30 to 99.9% by weight of one or more monoethylenically unsaturated monomers II having at least one C12—C48-n-alkyl side chain, ii) 0 to 60% by weight of one or more monoethylenically unsaturated monomers II having at least one C1—C11-n-alkyl and/or one C3—C48-i-alkyl side chain, iii) 0.1 to 20% by weight of one or more monomers III having at least two non-conjugated ethylenic double bonds, iv) 0 to 69.9% by weight of one or more (hetero)aromatic, monoethylenically unsaturated monomers IV, v) 0 to 40% by weight of one or more other monoethylenically unsaturated monomers V; and B. 0 to 90% by weight of a polymer phase B, obtainable by subsequent free-radical graft copolymerization, in the presence of the polymer phase A obtained after stage A), of a monomer mixture containing i) 0 to 100% by weight of one or more monomers VI from the group of the C1—C10-alkyl (meth)acrylates, ii) 0 to 100% by weight of one or more (hetero)aromatic, monoethylenically unsaturated monomers VII, iii) 0 to 50% by weight of one or more other monoethylenically unsaturated monomers VIII, where the percentages by weight of the monomer mixtures used in the respective stages add up to 100% by weight.
    • 具有纳米和pm之间50 10的平均初级粒径d50用含有总重量相对于聚合物粒子:A.从10到100重量聚合物相A,由含有单体混合物作为油相的油包水微乳液的自由基共聚获得的%I )30至99.9重量%的一种或多种单烯属不饱和单体的%I与至少一种C12-C48正烷基侧链,II)0至60重量具有至少一个C1的一种或多种单烯属不饱和单体II的% -C11正烷基和/或C3-C48-异AIkylseitenkette,III)为0.1至20重量的一种或多种单体III具有至少两个非共轭烯属双键,静脉内)从0到69.9%的 重量的一种或多种(杂)芳族的,单烯属不饱和单体Ⅳ的%,v)0至40重量的一种或多种其它单烯属不饱和单体的v%; 和B. 0至90重量的聚合物相B的%,通过在聚合物相的存在随后的自由基接枝共聚根据阶段A)从0单体混合物包含:i)至100重量%的一种或多种单体的%选自VI的获得 C1-C10烷基(甲基)丙烯酸酯,ⅱ)0至100重量的一种或多种(杂的%)芳族的,单烯属不饱和单体VII,III)0至50重量的一种或多种其它单烯不饱和% VIII的单体,其特征在于,按重量计在各阶段使用的单体混合物的百分比合计为100重量%。