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    • 3. 发明授权
    • System and method for braking system control in distributed power vehicles
    • 分布式动力车辆制动系统控制系统及方法
    • US09415756B2
    • 2016-08-16
    • US12512259
    • 2009-07-30
    • Eugene A. SmithMark Wayne WheelerJames Glen CorryRobert PalantiRabi Ratnesar
    • Eugene A. SmithMark Wayne WheelerJames Glen CorryRobert PalantiRabi Ratnesar
    • B60T17/12B60T17/18B60T7/12B60T7/18
    • B60T17/18B60T7/12B60T7/18
    • A brake control system for a distributed power vehicle system includes a brake system and a distributed power control system in a first vehicle, and first and second separate communication links between the brake system and the distributed power control system. In operation, upon the initiation of a penalty brake application, the brake system transmits information about the brake level of the penalty brake application to the distributed power control system, over at least the first communication link. However, if the first communication link fails, the brake system redundantly transmits the information about the level of the penalty brake application to the distributed power control system over the second communication link. The information is transmitted from the distributed power control system in the first vehicle to remote vehicles for carrying out the penalty brake application.
    • 一种用于分布式动力车辆系统的制动控制系统包括第一车辆中的制动系统和分布式动力控制系统,以及制动系统和分布式动力控制系统之间的第一和第二分离的通信链路。 在操作中,在开始惩罚制动应用时,制动系统通过至少第一通信链路将关于惩罚制动应用的制动水平的信息发送到分布式电力控制系统。 然而,如果第一通信链路发生故障,则制动系统通过第二通信链路将关于惩罚制动应用的级别的信息冗余地发送到分布式电力控制系统。 信息从第一车辆中的分布式电力控制系统发送到远程车辆,以执行惩罚制动应用。
    • 4. 发明申请
    • SYSTEM AND METHOD FOR BRAKING SYSTEM CONTROL IN DISTRIBUTED POWER VEHICLES
    • 分布式动力车辆制动系统控制系统与方法
    • US20100030409A1
    • 2010-02-04
    • US12512259
    • 2009-07-30
    • Eugene A. SmithMark Wayne WheelerJames Glen CorryRobert PalantiRabi Ratnesar
    • Eugene A. SmithMark Wayne WheelerJames Glen CorryRobert PalantiRabi Ratnesar
    • G05D1/00
    • B60T17/18B60T7/12B60T7/18
    • A brake control system for a distributed power vehicle system includes a brake system and a distributed power control system in a first vehicle, and first and second separate communication links between the brake system and the distributed power control system. In operation, upon the initiation of a penalty brake application, the brake system transmits information about the brake level of the penalty brake application to the distributed power control system, over at least the first communication link. However, if the first communication link fails, the brake system redundantly transmits the information about the level of the penalty brake application to the distributed power control system over the second communication link. The information is transmitted from the distributed power control system in the first vehicle to remote vehicles for carrying out the penalty brake application.
    • 一种用于分布式动力车辆系统的制动控制系统包括第一车辆中的制动系统和分布式动力控制系统,以及制动系统和分布式动力控制系统之间的第一和第二分离的通信链路。 在操作中,在开始惩罚制动应用时,制动系统通过至少第一通信链路将关于惩罚制动应用的制动水平的信息发送到分布式电力控制系统。 然而,如果第一通信链路发生故障,则制动系统通过第二通信链路将关于惩罚制动应用的级别的信息冗余地发送到分布式电力控制系统。 信息从第一车辆中的分布式电力控制系统发送到远程车辆,以执行惩罚制动应用。
    • 6. 发明申请
    • SYSTEM AND METHOD FOR CONTROL OF DISTRIBUTED POWER RAIL VEHICLE
    • 用于控制分布式电力轨道车辆的系统和方法
    • US20100194186A1
    • 2010-08-05
    • US12688496
    • 2010-01-15
    • Eugene A. SmithDerek Kevin WooRobert Palanti
    • Eugene A. SmithDerek Kevin WooRobert Palanti
    • B60T13/00
    • 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。
    • 7. 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
    • Communication management system and method for a rail vehicle
    • 轨道车辆的通信管理系统和方法
    • US08682513B2
    • 2014-03-25
    • US13443400
    • 2012-04-10
    • Yi ChenJeffrey TwichelBrian MeyerRobert PalantiScott Sexauer
    • Yi ChenJeffrey TwichelBrian MeyerRobert PalantiScott Sexauer
    • G06F17/00B61L3/12
    • B61L15/0027B61L3/006B61L15/0036B61L15/0081
    • A communication management system for a vehicle includes a control module, a communication module, and a management module. The control module is disposed on-board a lead powered unit of the vehicle. The control module is configured to automatically change propulsion energy settings of a remote powered unit of the vehicle. The communication module transmits instructions to the remote powered unit to automatically change the propulsion energy settings of the remote powered unit. The communication module identifies communication gaps that represent interruption in one or more communication connections between the lead powered unit and the remote powered unit. The management module compares the propulsion energy settings of the lead powered unit and of the remote powered unit during the communication gaps and, based on the propulsion energy settings, prevents the control module from switching from automatic control of the propulsion energy settings of the remote powered unit to manual control.
    • 车辆的通信管理系统包括控制模块,通信模块和管理模块。 控制模块被布置在车辆的引导动力单元上。 控制模块被配置为自动改变车辆的远程供电单元的推进能量设置。 通信模块向远程供电单元发送指令以自动改变远程供电单元的推进能量设置。 通信模块识别表示在牵引供电单元和远程供电单元之间的一个或多个通信连接中的中断的通信间隙。 管理模块在通信间隙期间比较牵引供电单元和远程供电单元的推进能量设置,并且基于推进能量设置,防止控制模块从远程供电的推进能量设置的自动控制切换 单位到手动控制。
    • 9. 发明申请
    • 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
    • US20070236078A1
    • 2007-10-11
    • US11400926
    • 2006-04-10
    • Eugene SmithRobert Palanti
    • Eugene SmithRobert Palanti
    • B60T13/00
    • 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 。
    • 10. 发明申请
    • On-board message repeater for railroad train communications system
    • 铁路列车通信系统的车载信息中继器
    • US20060085103A1
    • 2006-04-20
    • US11088090
    • 2005-03-23
    • Eugene SmithDavid PeltzRobert Palanti
    • Eugene SmithDavid PeltzRobert Palanti
    • G05D1/00
    • B61L15/0027B61L27/0038H04B7/2606
    • A distributed power train (10) communications system for sending and receiving signals between a lead locomotive (14) and remote locomotives (12A/12B/12C) in the train (10). A lead (14) initiated message is received by at least the remote locomotive (12A/12B) nearest to the lead unit (14). The receiving remote unit (12A/12B) retransmits the message for receiving by the next remote unit (12C) in the train. Thus the message leapfrogs down the train from the lead unit (14) to the remote units (12A/12B/12C). When the last remote unit (the nth remote unit) (12C) receives the message, the last remote (12C) transmits a status or other response message to the lead unit's message. The status message is received at the (n-1)th remote unit (12A/12B), which appends its status message and transmits the combined status messages toward the lead unit (14). Each successive remote unit receives the status messages of the other remote units and appends its status message, until the concatenated status message reaches the lead unit (14).
    • 一种用于在列车(10)内的引导机车(14)和远程机车(12A / 12B / 12C)之间发送和接收信号的分布式动力传动系(10)通信系统。 由至少远离引导单元(14)的远程机车(12A / 12B)接收引导(14)发起的消息。 接收远程单元(12A / 12B)重新发送由列车中的下一个远程单元(12C)接收的消息。 因此,该消息使列车从引导单元(14)向下跳跃到远程单元(12A / 12B / 12C)。 当最后一个远程单元(第n个远程单元)(12C)接收到消息时,最后一个远程(12C)向引导单元的消息发送状态或其他响应消息。 在第(n-1)个远程单元(12A / 12B)处接收状态消息,附加其状态消息并将组合的状态消息发送到引导单元(14)。 每个连续的远程单元接收其他远程单元的状态消息并附加其状态消息,直到级联的状态消息到达引导单元(14)。