会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Adaptive brake flow masking at remote locomotives of a distributed power train
    • 分布式动力传动系的远程机车的自适应制动液流屏蔽
    • US07628458B2
    • 2009-12-08
    • US11400926
    • 2006-04-10
    • Eugene A. SmithRobert C. Palanti
    • Eugene A. SmithRobert C. Palanti
    • B60T13/74B60T13/66B60T15/00
    • B60T13/665B60T17/228
    • In a transportation system comprising a fluid carrying brake pipe (14) connecting controlling member of the system and a controlled member (e.g., 12) a method of adaptively disabling an ability of the controlled member to respond to an unexpected brake pipe flow condition includes determining a braking state of the transportation system. The method also includes determining a degree of change in a brake pipe pressure during the braking state. The method further includes disabling an ability of the controlled member to respond to an unexpected brake pipe flow condition for a time period responsive to the braking state and the degree of change in the brake pipe pressure so that an undesired operation of the controlled member is limited.
    • 在包括连接系统的控制构件的流体输送制动管(14)和受控构件(例如12)的运输系统中,一种自适应地禁用受控构件响应意外的制动管道流动条件的能力的方法包括确定 运输系统的制动状态。 该方法还包括确定制动状态期间制动管压力的变化程度。 该方法还包括禁用受控构件响应于制动状态和制动管压力的变化程度对意外的制动管道流动状况作出响应的能力,使得受控构件的不期望的操作受到限制 。
    • 2. 发明授权
    • System, method, and computer readable media for adaptively determining a brake application level for signaling a remote locomotive of a train during a communication loss
    • 系统,方法和计算机可读介质,用于在通信丢失期间自适应地确定用于信令火车的远程机车的制动应用水平
    • US09340195B2
    • 2016-05-17
    • US11554635
    • 2006-10-31
    • Eugene A. Smith
    • Eugene A. Smith
    • B60T13/66B60T17/22
    • B60T17/228B60T13/66
    • In a railroad train having a brake system including a fluid carrying brake pipe (14) having an exhaust (52) and connecting a lead locomotive (12) and at least one remote locomotive, the train further comprising a communication system (24) for communicating between the lead locomotive and the remote locomotive, a method for adaptively determining a brake application for signaling a remote locomotive of a train during a communication loss includes determining a brake system operating condition of the train (72). The method also includes determining an operability condition of the communication system (74) and identifying an operator commanded brake application level at the lead locomotive during a communication system inoperability condition (76). The method further includes determining a signaling brake application level sufficient for signaling the remote locomotive via the brake pipe responsive to the monitored brake system operating condition (78).
    • 在具有制动系统的铁路列车中,所述制动系统包括具有排气(52)并且连接引导机车(12)和至少一个远程机车的流体承载制动管(14),所述列车还包括通信系统(24) 在前导机车和远程机车之间,在通信损失期间自适应地确定用于向列车的远程机车发信号的制动应用的方法包括确定列车(72)的制动系统操作状态。 该方法还包括在通信系统不可操作性条件(76)期间确定通信系统(74)的可操作性状况并且识别在引导机车处的操作者指令的制动应用水平。 该方法还包括响应于所监视的制动系统操作条件(78)确定足以通过制动管道向远程机车发信号的信号制动应用水平。
    • 4. 发明授权
    • System and method for control of distributed power rail vehicle
    • 分布式电力轨道车辆控制系统及方法
    • US08500214B2
    • 2013-08-06
    • US12688496
    • 2010-01-15
    • Eugene A. SmithDerek Kevin WooRobert Palanti
    • Eugene A. SmithDerek Kevin WooRobert Palanti
    • B60T13/66B60T7/16
    • B60T13/665B60T17/228
    • In a system and method for controlling a distributed power rail vehicle consist, each of at least one powered rail vehicle in the rail vehicle consist is designated for operation as a remote trail. Based on the designation, a respective brake pipe valve of each of the at least one powered rail vehicle is automatically operated to a cut-out mode. Upon initiation of a service, an emergency, and/or a penalty brake application in the rail vehicle consist, the respective brake pipe valve of each of the at least one the powered rail vehicle is automatically operated to a cut-in mode. Upon completion of the service, emergency, and/or penalty brake application in the rail vehicle consist, the respective brake pipe valve of each of the at least one powered rail vehicle is automatically operated back to the cut-out mode.
    • 在用于控制分布式电力轨道车辆组合的系统和方法中,轨道车辆组合中的至少一个动力轨道车辆中的每一个被指定用作远程轨迹。 基于该指定,所述至少一个动力轨道车辆中的每一个的相应制动管阀自动地操作到切断模式。 在轨道车辆中开始服务,紧急情况和/或罚款制动器应用中,至少一个动力轨道车辆中的每一个的相应制动管阀自动地操作到切入模式。 在轨道车辆中的服务完成,紧急和/或惩罚制动器应用组合时,至少一个动力轨道车辆中的每一个的相应的制动管阀被自动地运行到切断模式。
    • 8. 发明授权
    • Cushion strap assembly and method of making same
    • 靠垫带组装及其制作方法
    • US5507681A
    • 1996-04-16
    • US162537
    • 1993-12-03
    • Eugene A. SmithDonald J. LaTorreShantilal G. PatelAnthony J. Tedeschi
    • Eugene A. SmithDonald J. LaTorreShantilal G. PatelAnthony J. Tedeschi
    • A41F15/00A41B3/12A41D27/00A41D27/26
    • A41F15/00A41F15/007
    • A cushion strap assembly and method of making same is provided which cushion strap assembly is adapted to be used in a brassiere shoulder strap. The assembly includes a top fabric layer, a first adhesive web layer positioned on one side of the top fabric layer, and a base layer positioned on the first adhesive layer on the side opposite that of the top fabric layer. The assembly also includes a cushion filler that is a first cushion layer, a third adhesive web layer positioned on a side of the first cushion layer, a second cushion layer positioned on the third adhesive layer on the side opposite that of the first cushion layer. A second adhesive web layer can be part of the cushion filler or separate. In either event, it is positioned on the first cushion layer on the side opposite the third adhesive web layer. The assembly further includes a fourth adhesive web layer positioned on the second cushion layer on the side opposite that of the third adhesive web layer, and a bottom fabric layer positioned on the fourth adhesive web layer on the side opposite that of the second cushion layer.
    • 提供一种缓冲带组件及其制造方法,该缓冲带组件适用于胸罩肩带。 该组件包括顶部织物层,位于顶部织物层的一侧上的第一粘合剂纤维网层和位于与顶部织物层相对侧的第一粘合剂层上的基底层。 组件还包括缓冲填料,其是第一缓冲层,位于第一缓冲层一侧的第三粘合剂网层,位于与第一缓冲层相反侧的第三粘合剂层上的第二缓冲层。 第二粘合剂网层可以是缓冲填料的一部分或分开的。 在任一情况下,其位于与第三粘合剂纤维网层相对的一侧上的第一缓冲层上。 组件还包括位于与第三粘合剂纤维网层相对的一侧上的第二缓冲层上的第四粘合剂网层,以及位于与第二缓冲层相对侧的第四粘合剂纤维网层上的底部织物层。