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    • 11. 发明申请
    • Method of Controlling a Production Process
    • 控制生产过程的方法
    • US20090105866A1
    • 2009-04-23
    • US12254252
    • 2008-10-20
    • Paolo Fontanot
    • Paolo Fontanot
    • G05B19/00G06F17/00
    • G06K19/0723G05B19/4183G06Q10/06G06Q10/08Y02P90/10
    • In order to increase the efficiency of a production process a new method is presented. Thereby a flow of items is generated in a production system. Electronic devices that are attachable to the items are used for tracking the items. An identification of a first electronic device attached to a first item is read out. The identification is forwarded to a computer system that steers the flow of items. Due to a reception of the identification by the computer system, a transport status indicating authorization or prohibition to process the second item is set. The transport status is then transmitted to a second electronic device with an authorizing signal that is sent from the computer system to the second electronic device. The second electronic device contains a signal receiver circuit for receiving the authorizing signal and the second electronic device is attached to the second item.
    • 为了提高生产过程的效率,提出了一种新的方法。 从而在生产系统中产生物品流。 用于跟踪物品的电子设备可以附加到物品上。 读取附接到第一项目的第一电子设备的标识。 该识别被转发到引导物品流动的计算机系统。 由于接收到计算机系统的识别,所以设置指示处理第二项目的授权或禁止的传送状态。 然后将传输状态发送到具有从计算机系统发送到第二电子设备的授权信号的第二电子设备。 第二电子设备包含用于接收授权信号的信号接收器电路,并且第二电子设备附接到第二项。
    • 13. 发明授权
    • Method for the transmission of data samples
    • 传输数据样本的方法
    • US07991735B2
    • 2011-08-02
    • US12262694
    • 2008-10-31
    • Paolo Fontanot
    • Paolo Fontanot
    • G06F7/00G06F17/00
    • H04L1/1841H04L1/1678H04L1/188
    • A method enables efficient and coherent sample data storage in a system containing data transmitting and receiving devices. The algorithm is implemented by storing reverse-delta encoded data at a receiver side in a chronologically correct order by a data list and a recovery table, independently of the transmission device. The sender device compares a previously attached timestamp corresponding to each sent data sample to a timestamp attached to an acknowledge signal which it gets back from the receiver device, in order to find out which sample had been correctly received at the receiver side. If the sender does not receive a corresponding pair of timestamp and acknowledge signal until a predefined time interval has elapsed, it automatically resends at least one not acknowledged data sample.
    • 一种方法使得能够在包含数据发送和接收设备的系统中有效且连贯的采样数据存储。 通过独立于传输设备的数据列表和恢复表以按时间顺序正确的顺序在接收机侧存储反向增量编码的数据来实现该算法。 发送者设备将先前附加的与每个发送的数据样本相对应的时间戳与附加到从接收机设备返回的确认信号的时间戳进行比较,以便找出在接收机侧正确地接收到哪个样本。 如果发送方在预定义的时间间隔过去之前没有收到对应的时间戳和确认信号对,则自动重发至少一个未确认的数据样本。
    • 14. 发明申请
    • MONITORING SYSTEM OF A DYNAMICAL ARRANGEMENT OF PIECES TAKING PART IN A PROCESS RELATED TO A MANUFACTURING EXECUTING SYSTEM
    • 在制造执行系统相关过程中采集部件的动态布置的监控系统
    • US20110141266A1
    • 2011-06-16
    • US12966308
    • 2010-12-13
    • Paolo Fontanot
    • Paolo Fontanot
    • H04N7/18
    • G05B19/4183G05B2219/24097G05B2219/24215G05B2219/24216Y02P90/10Y02P90/12Y02P90/22
    • A monitoring system of a dynamical arrangement of pieces takes part in a process related to a manufacturing executing system is presented. At least one of the pieces is spatially movable and the arrangement is free of interfacing signals for signaling a spatial position of the pieces at a control unit of the manufacturing executing system. The monitoring system contains a camera which is spatially positionable in a free selected neighborhood closed to predefined pieces and which acquires an image of a field of interest of the dynamical arrangement, a motion detection unit at an output of the camera that provides a detection of a spatial motion of one of the pieces, and an interface at the output of the camera for transmitting the acquired image to an input of a monitoring unit to extract information on a status of the arrangement which is interpretable in the control unit.
    • 提出了一种动态布置的监控系统,其中包括与制造执行系统有关的过程。 这些片段中的至少一个是可空间移动的,并且该装置没有用于在制造执行系统的控制单元处发信号通知片段的空间位置的接口信号。 该监视系统包括一个摄像机,该照相机可空间定位在一个靠近预定片段的自由选定的邻域中,并且获取动态装置的感兴趣区域的图像;摄像机的输出处的运动检测单元, 其中一个部分的空间运动以及相机输出端处的接口,用于将所获取的图像发送到监视单元的输入端以提取关于在控制单元中可解释的装置的状态的信息。
    • 15. 发明申请
    • METHOD AND SYSTEM FOR SCHEDULING A MANUFACTURING PROCESS
    • 调度制造工艺的方法和系统
    • US20100217418A1
    • 2010-08-26
    • US12701823
    • 2010-02-08
    • Paolo Fontanot
    • Paolo Fontanot
    • G06F19/00
    • G06Q10/06
    • A method and a system for scheduling a manufacturing process planned by an enterprise resource planning and produced by equipment on a shop floor. A production scheduler within a manufacturing executing system schedules tasks of the manufacturing process. The production scheduler is enabled to display the current production schedule in a Gantt-chart and it is enabled to display for each equipment of the shop floor the time periods that are already scheduled and those time periods that are still unscheduled. A selector selects a specific equipment a time period still unscheduled. A query module is provided for querying a production database for this specific equipment to find at least one task that fits into the time period still unscheduled. The production scheduler is enabled to schedule the task in case of a single task found or in case of a plurality of tasks found schedule at least one of the tasks found by means of a decision entered by an user interaction or by means of a decision determined automatically by a selection preference.
    • 一种用于安排由企业资源规划计划并由车间设备生产的制造过程的方法和系统。 制造执行系统内的生产调度器调度制造过程的任务。 生产调度程序能够在甘特图中显示当前的生产计划,并且能够为车间的每个设备显示已经计划的时间段和仍在非计划的时间段。 选择器选择一个特定的设备,时间段仍然是非计划的。 提供查询模块,用于查询生产数据库以获得该特定设备,以找到适合尚未计划的时间段的至少一个任务。 生产调度器能够在发现单个任务的情况下调度任务,或者在发现多个任务的情况下,调度通过由用户交互输入的决定找到的任务中的至少一个,或者通过确定的决定 自动选择偏好。
    • 16. 发明申请
    • Method for the Transmission of Data Samples
    • 数据样本传输方法
    • US20090112826A1
    • 2009-04-30
    • US12262694
    • 2008-10-31
    • Paolo Fontanot
    • Paolo Fontanot
    • H04L1/18G06F11/14G06F7/06G06F17/30
    • H04L1/1841H04L1/1678H04L1/188
    • A method enables efficient and coherent sample data storage in a system containing data transmitting and receiving devices. The algorithm is implemented by storing reverse-delta encoded data at a receiver side in a chronologically correct order by a data list and a recovery table, independently of the transmission device. The sender device compares a previously attached timestamp corresponding to each sent data sample to a timestamp attached to an acknowledge signal which it gets back from the receiver device, in order to find out which sample had been correctly received at the receiver side. If the sender does not receive a corresponding pair of timestamp and acknowledge signal until a predefined time interval has elapsed, it automatically resends at least one not acknowledged data sample.
    • 一种方法使得能够在包含数据发送和接收设备的系统中有效且连贯的采样数据存储。 通过独立于传输设备的数据列表和恢复表以按时间顺序正确的顺序在接收机侧存储反向增量编码的数据来实现该算法。 发送者设备将先前附加的与每个发送的数据样本相对应的时间戳与附加到从接收机设备返回的确认信号的时间戳进行比较,以便找出在接收机侧正确地接收到哪个样本。 如果发送方在预定义的时间间隔过去之前没有收到对应的时间戳和确认信号对,则自动重发至少一个未确认的数据样本。