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    • 1. 发明授权
    • Controlling or analyzing a process by solving a system of linear equations in real-time
    • 通过实时求解线性方程组来控制或分析过程
    • US08204925B2
    • 2012-06-19
    • US12468160
    • 2009-05-19
    • Aljosa VrancicLothar Wenzel
    • Aljosa VrancicLothar Wenzel
    • G06F17/12G06F7/38G06F7/32G06F7/52G06G7/32G06G7/34G06G7/36
    • G06F17/12
    • System and method for controlling/analyzing a process by solving a system of linear equations in real-time. Linear equations that model the process are stored. In an off-line stage a partitioning strategy is determined based on the linear equations, including determining groups of values for recursively partitioning a set of values measured and/or computed from the process. In an on-line stage: current process data are received from the process, including measurements from the process, and composing a set of values; the linear equations are recursively solved for a first group of the set, where the first group partitions the set into respective subsets of values, and where the recursively solving produces solved values for respective first groups of the set/subset of values; the linear equations are solved for remaining unsolved values in the set, thereby producing solved values for the set, which are stored and are useable to control/analyze the process.
    • 用于通过实时求解线性方程组来控制/分析过程的系统和方法。 存储过程建模的线性方程。 在离线阶段,基于线性方程来确定分配策略,包括确定用于递归地划分从过程测量和/或计算的一组值的值组。 在在线阶段:从过程接收当前过程数据,包括来自过程的测量值,以及组合一组值; 对于集合的第一组递归地求解线性方程,其中第一组将集合分成相应的子集的子集,并且其中递归求解产生集合/子集的相应第一组的解值; 为集合中的剩余未解值求解线性方程,从而产生集合的求解值,这些值被存储并可用于控制/分析过程。
    • 2. 发明授权
    • Computer optimizer
    • 电脑优化器
    • US3628004A
    • 1971-12-14
    • US3628004D
    • 1969-07-10
    • FIRESTONE TIRE & RUBBER CO
    • CLAXTON WILLIAM EHOLDEN HAROLD C
    • G06G7/75G06G7/122G06G7/58G06G7/16G06G7/36G06G7/48
    • G06G7/58G06G7/122
    • A special purpose analog computer designed for optimization of the ingredient levels of a chemical compound. The physical characteristics of a particular rubber blend may be closely approximated by a general empirical or mathematical model equation expressed in first and second order terms of the ingredients. By analysis of raw experimental data relating to the physical characteristics of interest, a different set of influence coefficients for the general equation terms may be determined for each physical characteristic, whereby a number of special model equations are obtained. In the preferred embodiment of the invention an eight-channel analog system is provided for simultaneously evaluating eight special model equations, expressed in terms of five ingredients. The set of influence coefficients for the terms of each special model equation are scaled to values less than unity and are dialed upon a separate bank of potentiometers of the analog computer. Five variable factor dials are provided to control the voltage level or desired value of the ingredients which may be altered to simulate various combinations of ingredients. The analog computer then instantly computes eight outputs which represent the response values of the eight physical characteristics for the selected blend of ingredients. A four-oscilloscope readout is provided utilizing the eight outputs and is programmed so that an ideal blend results in the convergence of the four oscilloscope beams toward the center of the readout array. The computer has an automatic search mode of operation to continuously vary the levels of the variable factors to automatically search through a range of factor levels to attempt to locate that combination of blend of ingredients which produces the best response. Also a combination search is provided wherein the variable factor levels are periodically changed only in the direction to achieve optimum results and thus the optimum blend of constituents may be determined by this combination search circuit. The foregoing abstract is merely a resume of one general application, is not a complete discussion of all principles of operation or applications, and is not to be construed as a limitation on the scope of the claimed subject matter.
    • 7. 发明授权
    • Ground range computer
    • 接地范围计算机
    • US3723719A
    • 1973-03-27
    • US3723719D
    • 1972-02-03
    • SINGER CO
    • CHEN WCARTER J
    • G06G7/78G06G7/22G06G7/36
    • G06G7/78
    • The disclosed embodiment of the present invention is a device for use in aircraft flight simulators which computes, as a function of time, ground range from the aircraft''s nadir to an object in front of the aircraft, when given the aircraft''s altitude and the slant range to the object. The relationship between ground range, altitude and slant range is essentially a right triangular and can be expressed mathematically by he P ythagorean Theorem. The mathematical expression for the right triangle is differentiated with respect to time and rearranged into an integral equation for solution of the ground range variable. Integrating and dividing circuitry is provided for implementation of the integral equation. Also, compensation and switching circuitry is provided for initialization of the integrators.
    • 本发明的公开的实施例是一种用于飞行器飞行模拟器的装置,当将飞行器的高度和倾斜范围提供给飞机的飞行模拟器时,其计算作为时间的函数,从飞行器的最低点到飞机前方的物体的地面范围 物体。 地面范围,高度和倾斜范围之间的关系本质上是一个正确的三角形,可以用数学方法表示,他是Pthththoreren定理。 直角三角形的数学表达式相对于时间有差异,并重新排列成用于求解地面范围变量的积分方程。 提供积分和分频电路用于实现积分方程。 此外,提供补偿和开关电路用于积分器的初始化。