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    • 3. 发明授权
    • Group elevator scheduling with advance traffic information
    • 组电梯调度与提前交通信息
    • US08839913B2
    • 2014-09-23
    • US13527220
    • 2012-06-19
    • Mauro J. AtallaArthur C. HsuPeter B. LuhGregory G. LutherBo Xiong
    • Mauro J. AtallaArthur C. HsuPeter B. LuhGregory G. LutherBo Xiong
    • B66B1/20
    • B66B1/20
    • A near-optimal scheduling method for a group of elevators uses advance traffic information. More particularly, advance traffic information is used to define a snapshot problem (24) in which the objective is to improve performance for customers. To solve the snapshot problem (24), the objective function is transformed into a form to facilitate the decomposition of the problem into individual car subproblems (26). The subproblems (26) are independently solved using a two-level formulation, with passenger to car assignment (28) at the higher level, and the dispatching of individual cars (30) at the lower level. Near-optimal passenger selection and individual car routing (38) are obtained. The individual cars are then coordinated through an iterative process (40, 42) to arrive at a group control solution that achieves a near-optimal result for passengers.
    • 一组电梯的近似调度方法使用预先的交通信息。 更具体地,使用提前交通信息来定义快照问题(24),其目的是提高客户的性能。 为了解决快照问题(24),将目标函数转化为一种形式,以便于将问题分解为单独的汽车子问题(26)。 子问题(26)使用两级制式独立地解决,乘客在较高级别进行汽车分配(28),并在较低级别调度单车(30)。 获得最佳乘客选择和单车路线(38)。 然后通过迭代过程(40,42)来协调各个车辆,以获得实现乘客接近最佳结果的群控制解决方案。
    • 6. 发明申请
    • CIRCULATION TRANSPORT SYSTEM
    • 循环运输系统
    • US20140190774A1
    • 2014-07-10
    • US14116209
    • 2011-05-11
    • Arthur C. HsuAndrzej Ernest Kuczek
    • Arthur C. HsuAndrzej Ernest Kuczek
    • B66B11/00
    • B66B11/0005B66B9/003
    • An elevator system includes two or more hoistways. One or more elevator cars are located in a first of the two or more hoistways and movable to a second hoistway of the two or more hoistways. The system further includes one or more elevator car transfer mechanisms including a transfer cage receptive of an elevator car of the one or more elevator cars and one or more transfer rails extending from the first hoistway to the second hoistway. The transfer cage is connected to the one or more transfer rails and is configured to transfer the elevator car received in the transfer cage by movement of the transfer cage along the one or more transfer rails from the first hoistway to the second hoistway.
    • 电梯系统包括两个或更多个井道。 一个或多个电梯轿厢位于两个或更多个井道中的第一个中,并且可移动到两个或更多个井道的第二井道。 该系统还包括一个或多个电梯轿厢转移机构,其包括接收一个或多个电梯轿厢的电梯轿厢的转移笼和从第一井道延伸到第二井道的一个或多个输送轨道。 传送笼连接到一个或多个传送轨道,并且被配置为通过传送笼沿着一个或多个传送轨道从第一井道移动到第二井道来传送接收在转移笼中的电梯轿厢。
    • 8. 发明授权
    • Operating less than all of multiple cars in a hoistway following communication failure between some or all cars
    • 在一些或所有汽车之间的通信故障之后,在井道中运行的所有多辆汽车的运行情况
    • US08020668B2
    • 2011-09-20
    • US12303289
    • 2006-06-07
    • Arthur C. HsuTheresa M. Christy
    • Arthur C. HsuTheresa M. Christy
    • B66B9/00
    • B66B5/0031
    • A plurality of cars (A-C) traveling in the same hoistway (10) send communication check codes (27, 35, 70, 77) to each other over a first communication channel, and if a response is not received (30, 37, 73, 80) within a predetermined time (32, 38, 74, 81) the car not getting a response will send a failure mode command to the other two cars (53, 82). Either the car (A) which senses the failure, or a predesignated car (B) will assume a wild car mode (60, 88) after the other two cars are safely parked (56, 57; 85, 86) out of the way, under control of special sensors and signals sent over a second communications channel. Two out of three cars may operate if only one has communication failure with one or two of the others.
    • 在同一井道(10)中行进的多个轿厢(AC)通过第一通信信道彼此发送通信检查码(27,35,70,77),如果没有接收到响应(30,37,73 ,80)在未获得响应的车辆的预定时间(32,38,74,81)内将向其他两个轿厢(53,82)发送故障模式命令。 感觉到故障的汽车(A)或预先指定的汽车(B)将在另外两辆汽车安全停放(56,57; 85,86)之后,采取野车模式(60,88) 在通过第二通信信道发送的特殊传感器和信号的控制下。 如果只有一个有一个或两个其他的通信故障,三个车中的两个可能会运行。