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    • 91. 发明授权
    • System and method for real-time industrial process modeling
    • 用于实时工业过程建模的系统和方法
    • US08457767B2
    • 2013-06-04
    • US12983054
    • 2010-12-31
    • Brad Radl
    • Brad Radl
    • G05B13/02G05B21/02G06F7/60G06F17/10G06F15/18G06F17/00G06E3/00G06N5/02
    • G05B13/0265G05B13/048
    • The present invention presents two new model types and a new method for evaluating a model used in the control application. These include a compound model, a hybrid model and a directional change coefficient model. The present invention allows the mixing of models with different inputs and outputs and the switching between these models based criteria for measuring optimization accuracy. The present invention allows switching between these models. The compound model is a model type that allows zooming in on the process to model parts of the data space with higher fidelity or resolution without loosing the capability to model the complete data space. The modeler does not loose any functionally over a regular neural network, but instead gains the ability to define the conditions when the model should use network weights best matched to the defined local conditions. The hybrid model is an extended version of a compound model. A hybrid model allows the combining of one or more models into a single model for purposes of interrogation or optimization. Within the hybrid model may reside a compound model itself. The directional change model (DCC) allows better evaluation of the predictive capability of Compound Models. It may also be used with any other model type.
    • 本发明提出了两种新的模型类型和用于评估控制应用中使用的模型的新方法。 这些包括复合模型,混合模型和方向变化系数模型。 本发明允许混合具有不同输入和输出的模型以及用于测量优化精度的这些基于模型的标准之间的切换。 本发明允许在这些模型之间切换。 复合模型是一种模型类型,允许放大过程以更高的保真度或分辨率对数据空间的部分进行建模,而不会失去对完整数据空间建模的能力。 建模者在规则的神经网络上不会发生任何功能失效,而是在模型应该使用与定义的本地条件最匹配的网络权重时获得定义条件的能力。 混合模型是复合模型的扩展版本。 混合模型允许将一个或多个模型组合成单个模型用于询问或优化。 混合模型中可能存在复合模型本身。 方向变化模型(DCC)可以更好地评估复合模型的预测能力。 它也可以与任何其他型号类型一起使用。
    • 94. 发明申请
    • Compact Appliance For Making Flat Edibles
    • 用于制造平面食品的紧凑型设备
    • US20120034360A1
    • 2012-02-09
    • US13264622
    • 2010-04-14
    • Nagarkar Pranoti Israni
    • Nagarkar Pranoti Israni
    • A21D8/02G05B21/02G05D23/19A47J27/02
    • A21C11/006A21C1/02A21C1/1425A21C1/1435A21C1/1455A21C1/146B01F13/1055
    • A compact apparatus for automatically making a plurality of flat edibles includes a storage and dispensing unit that makes it unnecessary for a user to pre-measure ingredients. The apparatus also includes a mixing and kneading unit for making dough of optimal consistency. The mixing and kneading unit may be configured to prepare dough. The dough may be prepared by mixing and kneading the ingredients dispensed by the dispensers. The dough prepared may be transferred onto a lower platen from a transfer base by a transfer sweeper. The dough may be flattened in a platen unit. An upper platen and the lower platen of the platen unit may be heated to a pre-programmed temperature for cooking the flat edible. The temperature may also be manually set by the user based on user's preference. The flat may be cooked (e.g., heated, roasted and/or puffed) by the platen unit.
    • 用于自动制造多个平面食品的紧凑装置包括使得用户不需要预先测量成分的存储和分配单元。 该设备还包括用于制造最佳稠度的面团的混合和捏合单元。 混合和捏合单元可以被配置成制备面团。 面团可以通过混合和捏合由分配器分配的成分来制备。 制备的面团可以通过传送清扫器从转印基底转移到下压板上。 面团可以在压板单元中变平。 压板单元的上压板和下压板可以被加热到预编程的温度以烹饪扁平的可食用。 温度也可以由用户基于用户的偏好来手动设置。 平板可以被压板单元烹饪(例如,加热,烘烤和/或膨化)。
    • 95. 发明申请
    • SYSTEM FOR MONITORING PLANT EQUIPMENT
    • 监测植物设备系统
    • US20110184547A1
    • 2011-07-28
    • US12695667
    • 2010-01-28
    • Moheb Y. Loutfi
    • Moheb Y. Loutfi
    • G06F17/00G06F3/048G05B21/02G06N3/12
    • G01N19/08F27B7/42G05B23/0235
    • A system for monitoring plant equipment is provided. Another aspect provides an automated analysis system wherein software instructions operably compare sensor data to predefined valves and determine mechanical problems in multiple machines. In another aspect, a cement manufacturing system includes sensors for sensing movement conditions of cement making machines. A further aspect provides a central computer connected to vibration sensors associated with cement making machines, where software instructions perform real-time comparisons and machine performance determinations, based at least in part on sensed signals.
    • 提供了一种用于监控工厂设备的系统。 另一方面提供了一种自动化分析系统,其中软件指令可操作地将传感器数据与预定义的阀进行比较并确定多个机器中的机械问题。 另一方面,水泥制造系统包括用于感测水泥制造机器的运动状况的传感器。 另一方面提供一种连接到与水泥制造机相关联的振动传感器的中央计算机,其中软件指令至少部分地基于所感测的信号执行实时比较和机器性能确定。
    • 97. 发明申请
    • Methods for Data Acquisition Systems in Real Time Applications
    • 实时应用中数据采集系统的方法
    • US20110029101A1
    • 2011-02-03
    • US12534600
    • 2009-08-03
    • Rafael Castro ScorsiHector RubioDaniel Domene
    • Rafael Castro ScorsiHector RubioDaniel Domene
    • G05B21/02G06F15/00G06F17/40
    • G06F11/0745G05B19/4183G05B2219/31282G05B2219/31284G06F11/006G06F11/0772G06F13/24Y02P90/10Y02P90/12
    • A system may include a processing unit executing program instructions (SW), a data acquisition (DAQ) hardware device for acquiring sample data and/or generating control signals, and host memory configured to store data samples and various data associated with the DAQ and processor operations. The DAQ device may push HW status information to host memory upon being triggered by predetermined events taking place in the DAQ device, e.g. timing events or interrupts, to avoid or reduce SW reads to the DAQ device. The DAQ device may update dedicated buffers in host memory with status data on any of these events. The status information pushed to memory may be read in a manner that allows detection of race conditions. Interrupts generated by the DAQ device may be similarly handled. Upon generating an interrupt, the DAQ device may gather information required to handle the interrupt, and push the information into system memory, along with information identifying the interrupt. SW may read system memory for this information, and handle the interrupts as required without having to query the DAQ device.
    • 系统可以包括执行程序指令(SW)的处理单元,用于获取采样数据和/或产生控制信号的数据采集(DAQ)硬件设备,以及配置成存储与DAQ和处理器相关联的数据样本和各种数据的主机存储器 操作。 DAQ设备可以在由DAQ设备中发生的预定事件触发时将HW状态信息推送到主机存储器,例如。 定时事件或中断,以避免或减少对DAQ设备的SW读取。 DAQ设备可以更新主机存储器中的专用缓冲区,其中包含任何这些事件的状态数据。 推送到存储器的状态信息可以以允许检测竞态条件的方式被读取。 可以类似地处理由DAQ设备生成的中断。 在产生中断时,DAQ设备可以收集处理中断所需的信息,并将信息与识别中断的信息一起推送到系统存储器中。 SW可以读取该信息的系统内存,并根据需要处理中断,而无需查询DAQ设备。