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    • 41. 发明申请
    • Global equation solver and optimizer
    • 全局方程求解器和优化器
    • US20030125818A1
    • 2003-07-03
    • US10032682
    • 2001-12-28
    • Honeywell Inc.
    • Daniel P. Johnson
    • G05B013/02
    • G05B13/042
    • A method to determine global optimality/feasibility/infeasibility when solving a quadratic system of modeling equations for industrial problems includes a bound propagation process to refine bounds and improve linearization, a local linear bounding process to determine feasibility and find approximately feasible solutions, a local linearization process to determine feasibility and local optimality, and a global subdivision search to branch and prune. Applications include solving and optimizing scheduling, planning, operations, inventory, suppliers, ordering, customers, and production problems.
    • 当求解工业问题建模方程的二次系统时,确定全局最优性/可行性/不可行性的方法包括:边界传播过程,用于改进边界并改善线性化,局部线性边界过程,以确定可行性,找到近似可行的解,局部线性化 确定可行性和局部最优性的过程,以及全球分支搜索分支和修剪。 应用包括解决和优化调度,规划,运营,库存,供应商,订单,客户和生产问题。
    • 42. 发明申请
    • IC for universal computing with near zero programming complexity
    • 用于具有接近零编程复杂度的通用计算的IC
    • US20030120363A1
    • 2003-06-26
    • US10029502
    • 2001-12-21
    • QuickSilver Technology, Inc.
    • Fa-Long LuoBohumir Uvacek
    • G05B019/18G06E001/00G06E003/00G06N003/02G06G007/00G06F015/18G05B013/02
    • G06N3/063
    • A computing machine capable of performing multiple operations using a universal computing unit is provided. The universal computing unit maps an input signal to an output signal. The mapping is initiated using an instruction that includes the input signal, a weight matrix, and an activation function. Using the instruction, the universal computing unit may perform multiple operations using the same hardware configuration. The computation that is performed by the universal computing unit is determined by the weight matrix and activation function used. Accordingly, the universal computing unit does not require any programming to perform a type of computing operation because the type of operation is determined by the parameters of the instruction, specifically, the weight matrix and the activation function.
    • 提供了能够使用通用计算单元执行多个操作的计算机。 通用计算单元将输入信号映射到输出信号。 使用包括输入信号,权重矩阵和激活功能的指令来启动映射。 使用该指令,通用计算单元可以使用相同的硬件配置来执行多个操作。 由通用计算单元执行的计算由所使用的权重矩阵和激活函数确定。 因此,通用计算单元不需要任何编程来执行一种计算操作,因为操作的类型由指令的参数,具体地,权重矩阵和激活功能确定。
    • 44. 发明申请
    • Controller, temperature controller and heat processor using same
    • 控制器,温度控制器和热处理器使用相同
    • US20030102383A1
    • 2003-06-05
    • US10300150
    • 2002-11-19
    • OMRON Corporation
    • Ikuo NannoYoshihiro NagamiNaotaka UchiyamaGen YonedaMasahito Tanaka
    • G05B013/02
    • G05B17/02G05B13/042
    • A controller controls a physical variable such as temperature of a controlled system. A variable calculator calculates and output a manipulated variable on the controlled system based on of a target value such as a target temperature and a feedback value such as the measured temperature of the controlled system. A dead-time compensator provides a dead-time compensated output using a model simulating the controlled system having a dead time and an idealized model having no dead time, based on the manipulated variable outputted from the variable calculator to carry out an ordinary control and a dead-time compensated control. A switch functions to select the dead-time compensated control by providing a dead-time compensated output to the variable calculator or an ordinary control providing no dead-time compensated output to the variable calculator. The dead-time compensated control is carried out at least during set point response of the controller.
    • 控制器控制诸如受控系统的温度的物理变量。 可变计算器基于诸如目标温度的目标值和诸如受控系统的测量温度的反馈值来计算并输出受控系统上的操纵变量。 死区补偿器基于从可变计算器输出的操纵变量,使用模拟具有死区时间的受控系统的模型和没有死区时间的理想模型来提供死区补偿输出,以执行普通控制和 死区补偿控制。 开关用于通过向可变计算器提供死区补偿输出或者向变量计算器提供没有死区补偿输出的普通控制来选择死区补偿控制。 至少在控制器的设定点响应期间执行死区补偿控制。
    • 45. 发明申请
    • Appliance control system and method using mobile communications terminal, and home gateway
    • 家电控制系统和方法采用移动通信终端和家庭网关
    • US20030100962A1
    • 2003-05-29
    • US10305245
    • 2002-11-27
    • Tetsuji SumitaMasahiko Takahashi
    • G05B013/02G05B019/18
    • H04L12/2818H04L12/2803H04L29/06H04L67/04H04L67/12H04L69/329
    • Provided is an appliance control system and method for remotely controlling various types of electrical home appliances using a mobile communications terminal, and a home gateway. To operate the electrical home appliances which vary in manufacturer and type, a database 71 in a database center 7 stores each corresponding appliance control program. In a household area 3, the electrical home appliance(s) 4 are connected to a home gateway 6 via a household network 5. The home gateway 6 collectively controls information about the storage locations of the appliance control programs on the database 71 together with various types of information about the electrical home appliances 4. A mobile communications terminal 2 refers to the home gateway 6 so as to acquire from the database 71 only the appliance control program of any electrical home appliance 4 which a user desires to operate. Through interpretation and execution of thus acquired appliance control program, any desired operation is instructed to the electrical home appliance 4.
    • 提供了一种用于使用移动通信终端和家庭网关远程控制各种类型的家用电器的设备控制系统和方法。 为了操作制造商和类型不同的家用电器,数据库中心7中的数据库71存储每个对应的设备控制程序。 在家用区域3中,家用电器4通过家庭网络5连接到家庭网关6.家庭网关6将数据库71上的家电控制程序的存储位置的信息与各种 关于家用电器的信息类型4.移动通信终端2参考家庭网关6,以从数据库71仅获取用户期望操作的任何家用电器4的设备控制程序。 通过对这样获得的设备控制程序的解释和执行,向家用电器4指示任何期望的操作。
    • 46. 发明申请
    • Applying term consistency to the solution of unconstrained interval global optimization problems
    • 将术语一致性应用于无约束间隔全局优化问题的解决方案
    • US20030097191A1
    • 2003-05-22
    • US09991476
    • 2001-11-16
    • G. William WalsterEldon R. Hansen
    • G06E001/00G06E003/00G06G007/00G06F015/18G05B013/02
    • G06F17/18
    • One embodiment of the present invention provides a system that solves an unconstrained interval global optimization problem specified by a function null, wherein null is a scalar function of a vector xnull(x1, x2, x3, . . . xn). The system operates by receiving a representation of the function f, and then performing an interval global optimization process to compute guaranteed bounds on a globally minimum value null* of the function null(x) and the location or locations x* of the global minimum. While performing the interval global optimization process, the system deletes all of part of a subbox X for which null(x)>null_bar, wherein null_bar is the least upper bound on f* that has been so far found. This is called the nullnull_bar testnull. The system applies term consistency to the null_bar test over the subbox X to increase that portion of the subbox X that can be proved to violate the null_bar test.
    • 本发明的一个实施例提供一种解决由函数ƒ指定的无约束间隔全局优化问题的系统,其中ƒ是向量x =(x1,x2,x3,...,xn)的标量函数。 该系统通过接收函数f的表示,然后执行间隔全局优化处理来计算功能ƒ(x)的全局最小值ƒ*和全局最小值的位置或位置x *的保证边界。 在执行间隔全局优化过程时,系统将删除ƒ(x)>ƒ_bar的子箱X的所有部分,其中ƒ_bar是迄今为止找到的f *上的最小上限。 这被称为“ƒ_bar测试”。 系统将项目一致性应用于子框X上的ƒ_bar测试,以增加可被证明违反ƒ_bar测试的子箱X的那部分。
    • 47. 发明申请
    • Classifiers using eigen networks for recognition and classification of objects
    • 使用特征网络进行识别和分类的分类器
    • US20030093162A1
    • 2003-05-15
    • US10014199
    • 2001-11-13
    • Koninklijke Philips Electronics N.V.
    • Srinivas GuttaVasanth PhilominMiroslav Trajkovic
    • G06E001/00G06E003/00G06G007/00G06F015/18G05B013/02
    • G06K9/6247
    • Generally, an Eigen network and system using same are disclosed that use Principal Component Analysis (PCA) in a middle (or nullhiddennull) layer of a neural network. The PCA essentially takes the place of a Radial Basis Function hidden layer. A classifier comprises inputs that are routed to a PCA device. The PCA device performs PCA on the inputs and produces outputs (entitled nullPCA outputsnull for clarity). The PCA outputs are connected to output nodes. Generally, each output is connected to each output node. Each connection is multiplied by a weight, and each output node uses weighted PCA outputs to produce an output (entitled a nullnode outputnull for clarity). These node outputs are then generally compared in order to assign a class to the input. A system uses the PCA classifier to classify input patterns. In a third aspect of the invention, a PCA classifier is trained in order to determine weights for each of the connections that are connected to the output nodes.
    • 通常,公开了在神经网络的中间(或“隐藏”)层中使用主分量分析(PCA)的本征网络和使用它们的系统。 PCA基本上取代了径向基函数隐藏层。 分类器包括被路由到PCA设备的输入。 PCA设备在输入端执行PCA,并产生输出(为了清楚起见,标题为“PCA输出”)。 PCA输出连接到输出节点。 通常,每个输出都连接到每个输出节点。 每个连接乘以权重,并且每个输出节点使用加权的PCA输出来产生输出(为了清楚起见,标题为“节点输出”)。 然后通常比较这些节点输出,以便为输入分配一个类。 系统使用PCA分类器对输入模式进行分类。 在本发明的第三方面中,训练PCA分类器以便确定连接到输出节点的每个连接的权重。
    • 48. 发明申请
    • Control board for controlling and monitoring usage of water
    • 用于控制和监测水的使用的控制板
    • US20030093161A1
    • 2003-05-15
    • US10328319
    • 2002-12-23
    • Jerome M. GauthierNhon T. VuongMark J. Sippel
    • G05B013/02
    • E03C1/05
    • An apparatus for controlling and monitoring the usage of water from plumbing fixtures includes an electronic control board for supplying control signals including an activation signal to a controlled device in response to a detection signal created by a sensor. The electronic control board comprises an on delay timer that must time out before an activation signal is sent to the controlled device, a run timer which permits activation of the controlled device during a run time interval, and an off delay timer that must time out before a subsequent detection signal will be permitted to generate an activation signal. A lockout timer prohibits generation of an activation signal if the number of activations exceeds a cycle limit. The control board further comprises means for shutting off the controlled device if the second detection signal occurs during the run time interval.
    • 一种用于控制和监测来自卫生设备的水的使用的设备包括电子控制板,用于响应于由传感器产生的检测信号,将包括激活信号的控制信号提供给受控设备。 电子控制板包括在激活信号发送到受控设备之前必须超时的接通延迟定时器,允许在运行时间间隔期间激活受控设备的运行定时器以及必须超时的关闭延迟定时器 将允许随后的检测信号产生激活信号。 如果激活次数超过周期限制,则锁定定时器禁止产生激活信号。 如果在运行时间间隔期间发生第二检测信号,则控制板还包括用于关闭受控装置的装置。
    • 50. 发明申请
    • Method and apparatus for controlling a non-linear mill
    • 用于控制非线性磨机的方法和装置
    • US20030065410A1
    • 2003-04-03
    • US10314675
    • 2002-12-09
    • Gregory D. MartinEugene BoeStephen PicheJames David KeelerDouglas TimmerMark GerulesJohn P. Havener
    • G05B013/02
    • G05B13/048G05B13/042G05B17/02
    • A method and apparatus for controlling a non-linear mill. A linear controller is provided having a linear gain k that is operable to receive inputs representing measured variables of the plant and predict on an output of the linear controller predicted control values for manipulatible variables that control the plant. A non-linear model of the plant is provided for storing a representation of the plant over a trained region of the operating input space and having a steady-state gain K associated therewith. The gain k of the linear model is adjusted with the gain K of the non-linear model in accordance with a predetermined relationship as the measured variables change the operating region of the input space at which the linear controller is predicting the values for the manipulatible variables. The predicted manipulatible variables are then output after the step of adjusting the gain k
    • 一种用于控制非线性磨机的方法和装置。 提供具有线性增益k的线性控制器,其可操作以接收表示工厂的测量变量的输入,并且对线性控制器的输出预测用于控制工厂的操纵性变量的预测控制值。 提供工厂的非线性模型,用于在工作输入空间的经过训练的区域上存储工厂的表示,并具有与其相关联的稳态增益K. 线性模型的增益k根据预定的关系用非线性模型的增益K进行调整,因为测量的变量改变了线性控制器预测操作变量的值的输入空间的操作区域 。 然后在调整增益k的步骤之后输出预测的操纵变量