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    • 1. 发明申请
    • METHODS AND RADIO BASE STATIONS FOR DETERMINING PERFORMANCE STATE OF A CELL
    • 用于确定细胞性能状态的方法和无线电基站
    • US20130143550A1
    • 2013-06-06
    • US13701556
    • 2010-07-05
    • Peter ÖstrupDiana AndreiPontus SandbergPeter Werner
    • Peter ÖstrupDiana AndreiPontus SandbergPeter Werner
    • H04W24/10
    • H04W24/10H04W24/08
    • The invention relates to a method in a first radio base station for determining a performance state of a first cell served by the first radio base station, which first radio base station is comprised in a radio communications network. The method comprises determining traffic statistics of the first cell, comparing the traffic statistics with a threshold value, when the determined traffic statistics goes beyond the threshold value, transmitting a data request to a second radio base station requesting data retrieved in or associated with a second cell to be used to determine performance state of the first cell, receiving a data response indicating the requested data from the second radio base station, and determining the performance state of the first cell based on the data response.
    • 本发明涉及第一无线电基站中用于确定由第一无线电基站服务的第一小区的性能状态的方法,第一无线电基站包括在无线电通信网络中。 该方法包括:当所确定的流量统计超出阈值时,确定第一小区的流量统计,将流量统计与阈值进行比较;将数据请求发送到第二无线电基站,请求在第二个无线基站中检索到或与其相关联的数据 用于确定第一小区的性能状态的小区,从第二无线电基站接收指示所请求的数据的数据响应,以及基于数据响应确定第一小区的性能状态。
    • 2. 发明授权
    • Methods and radio base stations for determining performance state of a cell
    • 用于确定单元的性能状态的方法和无线电基站
    • US09179348B2
    • 2015-11-03
    • US13701556
    • 2010-07-05
    • Peter ÖstrupDiana AndreiPontus SandbergPeter Werner
    • Peter ÖstrupDiana AndreiPontus SandbergPeter Werner
    • H04W24/08H04W24/10
    • H04W24/10H04W24/08
    • The invention relates to a method in a first radio base station for determining a performance state of a first cell served by the first radio base station, which first radio base station is comprised in a radio communications network. The method comprises determining traffic statistics of the first cell, comparing the traffic statistics with a threshold value, when the determined traffic statistics goes beyond the threshold value, transmitting a data request to a second radio base station requesting data retrieved in or associated with a second cell to be used to determine performance state of the first cell, receiving a data response indicating the requested data from the second radio base station, and determining the performance state of the first cell based on the data response.
    • 本发明涉及第一无线电基站中用于确定由第一无线电基站服务的第一小区的性能状态的方法,第一无线电基站包括在无线电通信网络中。 该方法包括:当所确定的流量统计超出阈值时,确定第一小区的流量统计,将流量统计与阈值进行比较;将数据请求发送到第二无线电基站,请求在第二个无线基站中检索到或与其相关联的数据 用于确定第一小区的性能状态的小区,从第二无线电基站接收指示所请求的数据的数据响应,以及基于数据响应确定第一小区的性能状态。
    • 3. 发明申请
    • Methods and Arrangements for Handling a Setup of an S1 Application Protocol Signalling Connection
    • 用于处理S1应用协议信令连接的设置的方法和安排
    • US20120252436A1
    • 2012-10-04
    • US13516504
    • 2009-12-16
    • Peter ÖstrupStefan EngströmPeter Werner
    • Peter ÖstrupStefan EngströmPeter Werner
    • H04W8/02
    • H04W60/00H04W48/17H04W76/10H04W92/045
    • The invention relates to a method in a Mobility Management Entity (10,11) for handling a setup of an S1 Application Protocol signalling connection between a first radio base station and the Mobility Management Entity (10,11) in a Long Term Evolution radio communications network. The Mobility Management Entity (10,11) receives an S1 Setup Request message from the first radio base station (12). Furthermore, the Mobility Management Entity (10,11) sends an S1 Setup Response message to the first radio base station (12) enabling the first radio base station to handle the setup of the S1 Application Protocol signalling connection. The S1 Setup Response message comprises an indication of at least one supported tracking area code of a tracking area, which tracking area is served by the Mobility Management Entity (10,11).
    • 本发明涉及移动性管理实体(10,11)中的方法,用于在长期演进无线电通信中处理第一无线电基站和移动性管理实体(10,11)之间的S1应用协议信令连接的建立 网络。 移动管理实体(10,11)从第一无线电基站(12)接收S1建立请求消息。 此外,移动管理实体(10,11)向第一无线电基站(12)发送S1建立响应消息,使得第一无线电基站能够处理S1应用协议信令连接的建立。 S1设置响应消息包括跟踪区域的至少一个支持的跟踪区域代码的指示,该跟踪区域由移动性管理实体(10,11)服务。
    • 4. 发明授权
    • Methods and arrangements for handling a setup of an S1 application protocol signalling connection
    • 用于处理S1应用协议信令连接的设置的方法和布置
    • US08682320B2
    • 2014-03-25
    • US13516504
    • 2009-12-16
    • Peter ÖstrupStefan EngströmPeter Werner
    • Peter ÖstrupStefan EngströmPeter Werner
    • H04W4/00
    • H04W60/00H04W48/17H04W76/10H04W92/045
    • The invention relates to a method in a Mobility Management Entity (10,11) for handling a setup of an S1 Application Protocol signalling connection between a first radio base station and the Mobility Management Entity (10,11) in a Long Term Evolution radio communications network. The Mobility Management Entity (10,11) receives an S1 Setup Request message from the first radio base station (12). Furthermore, the Mobility Management Entity (10,11) sends an S1 Setup Response message to the first radio base station (12) enabling the first radio base station to handle the setup of the S1 Application Protocol signalling connection. The S1 Setup Response message comprises an indication of at least one supported tracking area code of a tracking area, which tracking area is served by the Mobility Management Entity (10,11).
    • 本发明涉及移动性管理实体(10,11)中的方法,用于在长期演进无线电通信中处理第一无线电基站和移动性管理实体(10,11)之间的S1应用协议信令连接的建立 网络。 移动管理实体(10,11)从第一无线电基站(12)接收S1建立请求消息。 此外,移动管理实体(10,11)向第一无线电基站(12)发送S1建立响应消息,使得第一无线电基站能够处理S1应用协议信令连接的建立。 S1设置响应消息包括跟踪区域的至少一个支持的跟踪区域代码的指示,该跟踪区域由移动性管理实体(10,11)服务。
    • 6. 发明申请
    • METHOD FOR PRODUCING SANDWICH CONSTRUCTION ELEMENTS
    • 生产三明治建筑元素的方法
    • US20130209723A1
    • 2013-08-15
    • US13805081
    • 2011-06-24
    • Franz Josef MüllerPeter WernerPeter Stracke
    • Franz Josef MüllerPeter WernerPeter Stracke
    • E04B1/14
    • E04B1/14B29C44/06B29C44/1214B29C44/1228B29C44/326B29C70/68B29K2311/10B32B5/18B32B5/20B32B5/22B32B5/245B32B37/1207B32B38/06B32B2037/1269B32B2038/0084B32B2250/40B32B2260/021B32B2260/023B32B2260/046B32B2262/062B32B2262/065B32B2262/08B32B2262/14B32B2266/0285B32B2305/022B32B2305/07B32B2305/20B32B2305/34B32B2307/546B32B2307/718B32B2309/02B32B2309/04B32B2309/10B32B2419/00B32B2607/00C08J5/045C08J5/24C08J9/0085C08J2361/06E04C2/22E04C2/243Y10T428/23914
    • The invention relates to a method for producing sandwich construction elements for substantially load-bearing and self-supporting building parts. In order to produce a sandwich element which is suitable for self-supporting and substantially load-bearing building parts, since it ensures the necessary transmission of the compressive, tensile and shear forces between the cover layer and core layer and meets the increased fire-protection requirements, the production method proposed contains the following steps: a) producing at least one layer of a mechanically bonded fiber nonwoven which is impregnated with a binder based on at least one heat-curable resin system, and is itself based on naturally occurring raw materials, in particular hemp, flax, jute, sisal, kenaf, cotton and wool and/or mixtures thereof, b) curing the heat-curable resin system in order to produce at least one hardened layer of the fiber nonwoven, wherein, before and/or during the curing operation, a surface structure is applied to at least part of the layer of the fiber nonwoven and/or at least one further binder based on at least one heat-curable resin system is applied to at least part of the surface of the hardened layer of the fiber nonwoven, and fixed thermally, c) bringing a heat-foamable or heat-foamed phenol resin into contact with that surface of at least one hardened layer of the fiber nonwoven which has been modified according to step b), d) possibly annealing, at temperatures ranging from 40 to 80° C., the composite produced in a) to c), and e) curing the further binder based on at least one heat-curable resin system, and possibly applied in b), at a temperature ranging from 150 to 200° C., possibly under elevated pressure.
    • 本发明涉及一种用于生产用于大体上承载和自支撑建筑部件的夹层结构件的方法。 为了生产适合于自支撑和基本承重建筑部件的夹层元件,因为它确保了覆盖层和芯层之间的压缩,拉伸和剪切力的必要传递,并满足增加的防火保护 要求,提出的生产方法包括以下步骤:a)生产至少一层机械粘合的纤维非织造材料,其基于至少一种热固性树脂体系浸渍有粘合剂,并且本身基于天然存在的原料 特别是大麻,亚麻,黄麻,剑麻,洋麻,棉和羊毛和/或其混合物,b)固化可热固化的树脂体系,以便生产至少一个纤维无纺布的硬化层,其中,在和/ 或者在固化操作期间,基于至少一种热固化树脂体系,至少部分纤维非织造材料层和/或至少一种其它粘合剂施加表面结构 施加到纤维非织造材的硬化层的至少一部分表面上并热固化,c)使可发泡或热发泡的酚醛树脂与纤维非织造材料的至少一个硬化层的表面接触, 已经根据步骤b)进行了改性,d)在40至80℃的温度下可能退火,在a)至c)中制备的复合材料,以及e)基于至少一种可热固化的 树脂体系,并且可能在b)中,在150至200℃的温度下,可能在升高的压力下。