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    • 12. 发明申请
    • Method of optimizing use of high-rate packet data resources
    • 优化使用高速率数据包数据资源的方法
    • US20070253378A1
    • 2007-11-01
    • US11411632
    • 2006-04-26
    • Saraswathi MahadevaiyerJonathan Gross
    • Saraswathi MahadevaiyerJonathan Gross
    • H04Q7/24
    • H04W28/22H04W72/0406H04W72/10
    • A method of optimizing use of a plurality of high-rate packet data (HRPD) resources may include assigning one of the plurality of HRPD resources to each of a plurality of mobile stations that is coupled to a radio access network, where the one of the plurality of HRPD resources is used to establish one of a plurality of HRPD sessions between one of the plurality of mobile stations and a radio access network, and where each of the plurality of mobile stations is not using packet-switched data channel. Subsequently an additional mobile station wirelessly coupling to the radio access network and requesting an HRPD resource. A first HRPD resource is reassigned to the additional mobile station without notifying the first mobile station, where the first HRPD resource is used to establish an additional HRPD session between the additional mobile station and the radio access network. The first HRPD session and the additional HRPD session are simultaneously maintained using the first HRPD resource while the first mobile station is not using the PSD channel.
    • 优化使用多个高速率分组数据(HRPD)资源的方法可以包括将多个HRPD资源中的一个资源分配给耦合到无线电接入网络的多个移动站中的每一个,其中, 使用多个HRPD资源来建立多个移动站之一和无线电接入网络之间的多个HRPD会话之一,并且其中多个移动站中的每一个不使用分组交换数据信道。 随后,附加的移动台无线地耦合到无线电接入网络并请求HRPD资源。 第一HRPD资源被重新分配给附加移动站,而不通知第一移动站,其中第一HRPD资源用于在附加移动站和无线电接入网络之间建立额外的HRPD会话。 当第一移动站不使用PSD信道时,使用第一HRPD资源同时维持第一HRPD会话和附加HRPD会话。
    • 14. 发明授权
    • Trim in place thermoforming arrangement for plastic articles
    • 修剪塑料制品的热成型布置
    • US4755129A
    • 1988-07-05
    • US23512
    • 1987-03-09
    • Philip S. BakerRoland De MayStephen L. GouletteJonathan Gross
    • Philip S. BakerRoland De MayStephen L. GouletteJonathan Gross
    • B29C51/32
    • B29C51/32Y10T83/4501
    • An arrangement for the thermoforming of molded plastic articles from a continuous web of a thermoplastic material, and more particularly, a trim in place thermoforming arrangement in which the plastic articles are simultaneously molded and at least substantially or completely separated from the remaining thermoplastic web material. A high degree of alignment and precision is obtained between cooperating cutting blades employed in the trimming of the thermoformed articles, because of a unique self-aligning or floating support structure of at least one of the cutting blades operating in conjunction with the thermoforming apparatus. The self-aligning action provided for between the slidingly contacting cutting blades allows for an automatic compensation for any temperature changes and blade wear encountered during operation, and with only one movable part being required for the trim in place device.
    • 一种用于从热塑性材料的连续腹板热成型模制塑料制品的装置,更具体地说,其中塑料制品同时模塑并且至少基本上或完全地与剩余的热塑性网状材料分离的装饰部件。 由于至少一个切割刀片与热成型装置一起操作的独特的自对准或浮动支撑结构,因此在热成形制品的修整中使用的协作切割刀片之间获得高度的对准和精度。 在滑动接触的切割刀片之间提供的自对准动作允许对在操作期间遇到的任何温度变化和刀片磨损进行自动补偿,并且仅需要一个可移动部件用于修剪就位装置。
    • 17. 发明申请
    • Method and system for adaptive control of reverse link interference
    • 反向链路干扰自适应控制方法及系统
    • US20060223444A1
    • 2006-10-05
    • US11095197
    • 2005-03-31
    • Jonathan GrossBrian Hansche
    • Jonathan GrossBrian Hansche
    • H04B17/00
    • H04W28/22H04B17/382H04L1/0002H04L1/0021H04L2001/0092
    • A method for controlling reverse link loading in a communication system comprises determining a reverse link load in the communication system. The communication system comprises a plurality of mobile units configured to receive a rate indicator from a base station. The rate indicator comprises a first state indicating the mobile units can increase their data transmission rate and a second state indicating that the plurality of mobile units can decrease their transmission rate. In a next step, a duty cycle of the rate indicator based on the reverse link load is set. The relationship between the reverse link loading and the duty cycle of the rate indicator is further determined adaptively based on the measured loading and link loss rate characteristics. Then, the rate indicator is sent to the plurality of mobile units using the duty cycle.
    • 一种用于在通信系统中控制反向链路负载的方法包括确定通信系统中的反向链路负载。 通信系统包括被配置为从基站接收速率指示符的多个移动单元。 速率指示器包括指示移动单元可以增加其数据传输速率的第一状态和指示多个移动单元可以降低其传输速率的第二状态。 在下一步中,设置基于反向链路负载的速率指示器的占空比。 基于测量的负载和链路损耗率特性,进一步自适应地确定反向链路负载与速率指示器的占空比之间的关系。 然后,使用占空比将速率指示符发送到多个移动单元。
    • 19. 发明授权
    • Annular extrusion die with internal choke ring and spider mandrel
    • 具有内部扼流环和星形心轴的环形挤出模具
    • US4711623A
    • 1987-12-08
    • US862729
    • 1986-05-13
    • Jonathan GrossO. James Marten
    • Jonathan GrossO. James Marten
    • B29C44/50B29C47/20B29C47/36
    • B29C47/362B29C44/50B29C47/20B29C47/0026
    • An annular extrusion die for extruding tubular thermoplastic materials, such as foamed thermoplastic, which incorporates an internal spider mandrel and a novel choke ring for eliminating striations in the extruded thermoplastic material while imparting an improved control over the uniformity in the gauge or thickness of the extruded plastic material. In order to more accurately control the uniformity in the gauge of the extruded plastic material, rather than varying the width of the gap or restriction in the die flow passageway formed by the choke ring which, in response to even minor changes in the gap width considerably changes the flow quantity, may overcompensate or overcontrol variations in the gauge thickness; there is varied the length of the land of the choke ring in the direction of material flow, in effect, in the machine direction, downstream of the spiders supporting the internal mandrel.
    • 用于挤出管状热塑性材料的环形挤出模具,例如发泡热塑性塑料,其包括内部的蜘蛛心轴和用于消除挤出的热塑性材料中的条纹的新的扼流环,同时提供对挤压的规格或厚度的均匀性的改进控制 塑料材料。 为了更精确地控制挤出塑料材料的规格的均匀性,而不是改变由扼流环形成的模具流动通道中的间隙或限制的宽度,其响应于间隙宽度中的甚至微小的变化 改变流量,可能过度补偿或过度控制仪表厚度的变化; 在材料流动的方向上,扼流环的接地长度变化,实际上在机器方向上,在支撑内部心轴的蜘蛛的下游。