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    • 2. 发明公开
    • Antenna for a wireless controller in oral cavity
    • Antennefüreine drahtlose Steuerungseinheit in derMundhöhle
    • EP2537492A1
    • 2012-12-26
    • EP11171259.2
    • 2011-06-24
    • TKS A/S
    • Christensen, Henrik Vie
    • A61F4/00G06F3/01A61B5/00
    • A61F4/00A61B5/0002A61B5/682G06F3/011
    • An intraoral cavity control system (1) having a shape adapted to be positioned between the palate in the roof of the mouth and the tongue comprising, a control interface (13) to receive control input from an organ of the mouth, a wireless transmitting and/or receiving means for transmitting an electrical output signal from the control system and/or for receiving an electrical input signal from an external unit, a control element for processing the control input from the control interface into said electrical output signal transmitted by the transmitting means and for processing said electrical input signals establishing a communication between the external unit and the control element, a power source for providing electrical power to said control system wherein the wireless transmitting and receiving means are further provided with an antenna (6,7,8,10) that is arranged to extend from within a first volume of the oral cavity bound by the medial surface of the teeth and being arranged within a second volume of the oral cavity bound between the medial surface of the teeth and the lateral boundaries of the vestibule of the oral cavity.
    • 一种口腔内控制系统(1),其具有适于定位在口腔顶部的腭部和舌头之间的形状,包括:控制接口(13),用于接收来自口腔器官的控制输入,无线发射和 /或用于从控制系统发送电输出信号和/或用于从外部单元接收电输入信号的接收装置,用于处理从控制接口到由发送装置发送的电输出信号的控制输入的控制元件 并且用于处理建立所述外部单元和所述控制元件之间的通信的所述电输入信号,用于向所述控制系统提供电力的电源,其中所述无线发射和接收装置还设置有天线(6,7,8, 10),其被布置成从由所述牙齿的内表面限定并被布置成的所述口腔的第一体积内延伸 第二体积的口腔结合在牙齿的内侧表面和口腔的前庭的侧边界之间。
    • 4. 发明公开
    • Open platform surveillance/monitoring system and method
    • Offenes Plattformbeobachtungs - / - überwachungssystemund -verfahren
    • EP2447870A1
    • 2012-05-02
    • EP10186855.2
    • 2010-10-07
    • Milestone Systems A/S
    • Christensen, Anders BentJensen, Søren Eschricht
    • G06F21/00
    • H04N7/18G06F21/552G06F21/6236G06F2221/2101G06F2221/2115G06F2221/2153H04L63/1408H04L67/12H04L67/125
    • The invention relates to a surveillance/monitoring system (400), comprising one or more peripheral devices (407, 408, 409, 415, 416, 425) for generating surveillance/monitoring signals and/or data, and a management system for controlling the peripheral devices (407, 408, 409, 415, 416, 425). The management system comprises one or more applications (300, 410, 420, 430), wherein each application (300, 410, 420, 430) is provided with an application-specific environment (301, 411, 421, 431). The surveillance/monitoring system (400) further comprises at least one value-added solution (200, 310, 320, 330, 404), each value-added solution (200, 310, 320, 330, 404) comprising an external component (201, 311, 321, 331, 401) and an application-independent adaption layer (202, 312, 322, 332, 402) through which the external component (201, 311, 321, 331, 401) communicates with the environment (301, 411, 421, 431) by implementing at least one first interaction request to the adaption layer (202, 312, 322, 332, 402) according to a pre-defined application-independent interaction interface (203, 313, 323, 333, 403). The environment (301, 411, 421, 431) is configured to mediate at least one interaction between the value-added solution (200, 310, 320, 330, 404) and the surveillance/monitoring system by matching the at least one first interaction request with at least one second interaction request from the surveillance/monitoring system (400) and fulfilling the interaction if a match is found.
    • 本发明涉及一种监视/监视系统(400),包括用于产生监视/监视信号和/或数据的一个或多个外围设备(407,408,409,415,416,425),以及一个用于控制 外围设备(407,408,409,415,416,425)。 管理系统包括一个或多个应用程序(300,410,420,430),其中每个应用程序(300,410,420,430)被提供有特定于应用程序的环境(301,411,421,431)。 监视/监视系统(400)还包括至少一个附加值解决方案(200,310,320,330,404),每个附加值解决方案(200,310,320,330,404)包括外部组件( 201,311,321,331,401)和独立于应用的适配层(202,312,322,332,402),外部组件(201,311,321,331,401)通过该适配层与环境(301 ,411,421,431),通过根据预定义的与应用无关的交互界面(203,313,323,333,342)向所述自适应层(202,312,322,332,402)执行至少一个第一交互请求, 403)。 环境(301,411,421,431)被配置为通过匹配所述至少一个第一交互来调解所述增值解决方案(200,310,320,330,404)和所述监视/监视系统之间的至少一个交互 请求具有来自监视/监视系统(400)的至少一个第二交互请求,并且如果发现匹配则满足交互。
    • 5. 发明公开
    • Wind turbine blade with variable trailing edge
    • Windturbinenschaufel mit variabler Austrittskante
    • EP2405129A1
    • 2012-01-11
    • EP10168529.5
    • 2010-07-06
    • LM GLASFIBER A/S
    • Bæk, PeterGrabau, Peter
    • F03D1/06F03D7/04
    • F03D1/0641F03D1/0675F03D7/0232F05B2240/31F05B2240/311F05B2270/32F05B2270/331Y02E10/721Y02E10/723
    • The present invention relates to a wind turbine blade for a rotor of a wind turbine having a substantially horizontal rotor shaft. The blade may comprise a profiled contour comprising a pressure side and a suction side as well as a leading edge and a trailing edge, a chord extending between the leading edge and the trailing edge, and the profiled contour generating a lift when being impacted by an incident airflow. In a cross section of the wind turbine blade perpendicular to a lengthwise direction of the wind turbine blade, a suction side point is defined on the suction side at the trailing edge of the blade, and a pressure side point is defined on the pressure side at the trailing edge of the blade. The suction side point is movable in relation to the pressure side point, and the blade is further provided with a displacement device configured to displace the pressure side point and the suction side point so that a distance between the suction side point and the pressure side point can be varied. The present invention further relates to a wind turbine including such a wind turbine blade and to a method of operating a wind turbine including such a wind turbine blade.
    • 本发明涉及一种用于风力涡轮机转子的风力涡轮机叶片,其具有基本上水平的转子轴。 叶片可以包括轮廓轮廓,其包括压力侧和吸力侧以及前缘和后缘,在前缘和后缘之间延伸的弦,并且轮廓轮廓在受到一个 事件气流。 在垂直于风力涡轮机叶片的长度方向的风力涡轮机叶片的横截面中,在叶片的后缘处的吸力侧上限定吸入侧点,并且压力侧点被限定在压力侧 叶片的后缘。 吸入侧点能够相对于压力侧点移动,并且叶片还设置有移动装置,其构造成使压力侧点和吸入侧点移位,使得吸入侧点与压力侧点之间的距离 可以变化。 本发明还涉及一种包括这种风力涡轮机叶片的风力涡轮机和一种操作包括这种风力涡轮机叶片的风力涡轮机的方法。
    • 6. 发明公开
    • Short post cable connector with resilient clamping member
    • Kurzer Stangenkabelstecker mit elastischem Klemmelement
    • EP2393158A1
    • 2011-12-07
    • EP10164953.1
    • 2010-06-04
    • PPC, A Division of John Mezzalingua Associates, Inc.
    • Eriksen, Kim
    • H01R9/05
    • H01R9/0527
    • A connector (1) for a coaxial cable comprising a body (2) extending from a first body end (4) to a second body end (6) defining a central axis (10). The body (2) has a central bore (9) with an inner surface (26),
      - a nut (5) arranged at the second end (6) of the body (2),
      - a post (7) arranged in the central bore (9) of the body (2) at the second body end (6) and being adapted to be inserted between the dielectric material (46) and the jacket (42) of a cable (40), and
      - a compression member (3) arranged at the first end (4) of the body (2). The connector (1) further comprises an annular, resilient clamping member (8) arranged within the central bore (9) of the body (2) substantially concentric with the central axis (10), said resilient clamping member (8) comprising:
      - a first end (27),
      - an opposing second end (28),
      - a central aperture defining an inner surface (24), arranged to receive a cable (40) such that the inner surface (24) is in slidable contact with the jacket (42) of the cable (40), and
      - an outer surface (25) in slidable contact with the inner surface (26) of the central bore (9).
    • 一种用于同轴电缆的连接器(1),包括从第一本体端(4)延伸到限定中心轴线(10)的第二本体端(6)的主体(2)。 主体(2)具有带有内表面(26)的中心孔(9), - 布置在主体(2)的第二端(6)处的螺母(5), - 布置在主体 主体(2)的中心孔(9)在第二主体端(6)处并适于插入在电缆(40)的介电材料(46)和护套(42)之间,以及 - 压缩构件 (3)布置在主体(2)的第一端(4)处。 连接器(1)还包括布置在主体(2)的中心孔(9)内的与中心轴线(10)大致同心的环形弹性夹紧件(8),所述弹性夹紧件(8)包括: 第一端(27), - 相对的第二端(28), - 限定内表面(24)的中心孔,被布置成接收电缆(40),使得内表面(24)能够与 电缆(40)的护套(42)和与中心孔(9)的内表面(26)可滑动接触的外表面(25)。
    • 7. 发明公开
    • RADIO FREQUENCY IDENTIFICATION TAG
    • 高频识别标签
    • EP2374095A1
    • 2011-10-12
    • EP09776263.7
    • 2009-08-20
    • BR-Technic V/henrik Risbo Jeppesen
    • JEPPESEN, Henrik Risbo
    • G06K19/077A01K11/00
    • G06K19/07749A01K11/004A01K11/006
    • A radio frequency identification RFID device (100, 200, 300, 400, 500) comprising: a wireless communication device (101, 201, 301, 401), such as an RFID chip or strap, having at least a pair of contact points (221), and an antenna structure (102, 202, 302, 402, 502) having a sheet (103, 203, 303, 403, 503, 603) of electrically conductive material being provided with an inner opening (104, 204, 304, 404, 504) so as to provide a hole through the antenna structure (102, 202, 302, 402, 502), the sheet (103, 203, 303, 403, 503, 603) further being provided with an elongated slot (105, 205, 305, 405) with a first and a second side, the slot (105, 205, 305, 405) having an inner end (106, 206, 306, 406) at a periphery of the opening (104, 204, 304, 404, 504) and an outer end (107, 207, 307, 407) at a periphery of the sheet (103, 203, 303, 403, 503, 603), the slot (105, 205, 305, 405) being formed so as to provide a spacing between the first side and the second side, wherein the conductive material is electrically connected from the first side of the slot (105, 205, 305, 405) to the second side of the slot (105, 205, 305, 405) via contact points (221) and through the communication device (101, 201, 301, 401) at a position between the inner end (106, 206, 306, 406) and the outer end (107, 207, 307, 407).
    • 9. 发明公开
    • Wind turbine blade with lightning protection system
    • Windturbinenblatt mit Blitzschutz系统
    • EP2365218A1
    • 2011-09-14
    • EP10155836.9
    • 2010-03-08
    • LM GLASFIBER A/S
    • HANSEN, Lars Bo
    • F03D11/00
    • F03D11/0033F03D80/30Y02E10/721Y02E10/722
    • A wind turbine blade with a lightning protection system is described. The blade comprises a shell body and comprises a longitudinal direction with a root end and a tip end. The blade further comprises a profiled contour including a pressure side and a suction side, as well as a leading edge and a trailing edge with a chord having a chord length extending there between, the profiled contour, when being impacted by an incident airflow, generating a lift. The lightning protection system comprises: at least one lightning receptor arranged freely accessible in or on a surface of the shell body surface, and a lightning down conductor electrically connected to the lightning receptor and comprising an inner conductor made of electrically conductive material imbedded in a bedding insulation made of an electrically non-conductive material. The lightning down conductor further comprises a first conductive layer having a resistance in the range of 10 to 10,000 Mega Ohm per meter, the first conductive layer being located in a transverse distance from the inner conductor and being electrically isolated from the inner conductor.
    • 描述了具有防雷系统的风力涡轮机叶片。 叶片包括壳体,并且包括具有根端和尖端的纵向方向。 叶片还包括具有压力侧和吸力侧的轮廓轮廓,以及前缘和后缘,弦杆具有在其间延伸的弦长,当轮廓被入射气流冲击时,弦的长度产生 电梯 雷电防护系统包括:至少一个在壳体表面的表面中或其表面上可自由接近的雷电接收器,以及与雷电接收器电连接的雷电导体,包括由导电材料制成的内导体, 由不导电材料制成的绝缘体。 闪电导体还包括具有在10至10,000兆欧/米范围内的电阻的第一导电层,第一导电层位于距离内部导体的横向距离处并与内部导体电隔离。
    • 10. 发明公开
    • A method of in situ calibrating load sensors of a wind turbine blade
    • Verfahren zur Kalibrierung von Lastsensoren einer Windturbinenschaufel
    • EP2354538A1
    • 2011-08-10
    • EP10000974.5
    • 2010-02-01
    • LM GLASFIBER A/S
    • Slot, Mark Olaf
    • F03D1/06F03D7/02
    • F03D1/065F03D17/00F05B2270/326F05B2270/328F05B2270/331F05B2270/802F05B2270/803Y02E10/721Y02E10/722
    • A method of in situ calibrating load sensors of a horizontal axis wind turbine is described. The wind turbine comprises a rotor including a hub and a number of wind turbine blades, which extend radially from the hub, the hub being connected to a drive train including a generator, which converts mechanical rotational motion of the rotor into electrical energy, wherein said number of blades comprises at least a first wind turbine blade provided with a number of first load sensors positioned in a first cross-section of the first wind turbine blade. The method comprises the steps of: a) determining a rotor azimuth angle of the first wind turbine blade, b) determining a pitch angle of the first wind turbine blade, c) measuring loads in the first cross-section of the first wind turbine blade using the first load sensors, d) calculating theoretical loads based on at least the rotor azimuth angle and the pitch angle of the blade determined in steps a) and b), e) comparing the loads measured in step c) with the theoretical loads calculated in step d), and f) calibrating the first load sensors based on the comparison of step e), wherein the calibration are based only on measurements carried out, when the generator is cut out.
    • 描述了水平轴风力涡轮机的负载传感器的原位校准方法。 风力涡轮机包括转子,其包括轮毂和从轮毂径向延伸的多个风力涡轮机叶片,轮毂连接到包括发电机的传动系,该发电机将转子的机械旋转运动转换成电能,其中所述 叶片的数量包括至少第一风力涡轮机叶片,其设置有定位在第一风力涡轮机叶片的第一横截面中的多个第一负载传感器。 该方法包括以下步骤:a)确定第一风力涡轮机叶片的转子方位角,b)确定第一风力涡轮机叶片的俯仰角,c)测量第一风力涡轮机叶片的第一横截面中的载荷 使用所述第一负载传感器,d)至少基于在步骤a)和b)中确定的所述叶片的转子方位角和桨距角来计算理论载荷,e)将步骤c)中测量的载荷与计算的理论载荷进行比较 在步骤d)中,以及f)基于步骤e)的比较校准所述第一负载传感器,其中所述校准仅基于所进行的测量,当所述发生器被切断时。