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    • 7. 发明申请
    • SENSOR SYSTEM AND METHOD
    • 传感器系统和方法
    • US20100289479A1
    • 2010-11-18
    • US12669615
    • 2008-07-15
    • Robert PranceHelen PranceChristopher Harland
    • Robert PranceHelen PranceChristopher Harland
    • G01R23/14H03H11/12
    • H03H11/1217H03H11/1291
    • The present invention provides a sensor system and a corresponding sensing method employing the sensor system. The sensor system comprises a sensor (12) having an input (20) and an output (22), a feedback path (16) from the output to the input, and a filter (14; 92) in the feedback path. The filter comprises a narrow band filter, which is tuned or tunable to a respective one of signals that are wanted signals and signals that represent interference signals. The sensor and the filter are arranged so as to alter the relative amplitudes of the wanted signals and the interference signals in order to increase the relative amplitude of the wanted signals and reduce the relative amplitude of the interference signals.
    • 本发明提供一种使用传感器系统的传感器系统和相应的感测方法。 传感器系统包括具有输入(20)和输出(22)的传感器(12),从输出到输入的反馈路径(16)以及反馈路径中的滤波器(14; 92)。 滤波器包括窄带滤波器,其被调谐或可调谐到所需信号和表示干扰信号的信号中的相应信号。 传感器和滤波器被布置成改变有用信号和干扰信号的相对振幅,以增加有用信号的相对幅度并减小干扰信号的相对幅度。
    • 8. 发明申请
    • ELECTRONIC CIRCUIT DESIGN
    • 电子电路设计
    • US20100162185A1
    • 2010-06-24
    • US12063501
    • 2006-08-11
    • Adrian Dominic Thompson
    • Adrian Dominic Thompson
    • G06F17/50
    • G06F17/5045G06N3/126
    • A system for optimising electronic circuits to be designed has two parts or phases, a training phase 10 in which optimisation scenarios for selected electronic circuits are derived using an evolutionary algorithm, and an operation phase 11, in which the derived optimisation scenarios are used to optimise new electronic circuits to be designed. The training phase 10 uses an evolutionary algorithm to produce a specialised and relatively fast optimisation scenario for each of a plurality of input circuits or groups of circuits (step 13). One or more of the evolved specialist optimisation scenarios are then selected to form a suite of optimisation scenarios (step 15) for use to optimise new circuits to be designed. In the operation phase 11, a new circuit to be optimised is input at step 18, and a plurality of optimisation scenarios from the suite of optimisation scenarios 15 is then used to try to optimise the new circuit (step 19). The best optimisation result is taken as the optimisation for the circuit (step 20).
    • 用于优化要设计的电子电路的系统具有两个部分或多个阶段,训练阶段10,其中使用进化算法导出所选择的电子电路的优化场景,以及操作阶段11,其中使用导出的优化场景来优化 新设电子电路。 训练阶段10使用进化算法为多个输入电路或电路组中的每一个产生专门且相对较快的优化方案(步骤13)。 然后选择一个或多个演进的专家优化场景以形成用于优化要设计的新电路的一组优化场景(步骤15)。 在操作阶段11中,在步骤18输入要优化的新电路,然后使用来自优化情景集合15的多个优化情景来尝试优化新电路(步骤19)。 将最佳优化结果作为电路的优化(步骤20)。
    • 9. 发明申请
    • Method for soil remediation and engineering
    • 土壤修复和工程方法
    • US20060163068A1
    • 2006-07-27
    • US10528629
    • 2003-09-26
    • Andrew CundyLaurence Hopkinson
    • Andrew CundyLaurence Hopkinson
    • E04B1/70
    • B09C1/085
    • An electrokinetic method for groundwater protection, soil remediation and engineering which comprises applying an electric field across an area of soil, sediment or slurry so as to generate a pH and Eh gradient and thereby promote the in situ precipitation of a stable iron-rich band. The method may be performed for the purpose of stabilisation and/or strategic dewatering/rewatering of soils, sediment and/or slurries, the improvement of the physical properties of soils and sediments for engineering purposes, the forced and directed migration of contaminated leachates, and/or electro-osmotic purging of non-polar contaminants.
    • 一种用于地下水保护,土壤修复和工程的电动方法,其包括在土壤,沉积物或浆料的区域上施加电场,以产生pH和Eh梯度,从而促进稳定的富铁带的原位沉淀。 该方法可以用于稳定和/或对土壤,沉积物和/或浆料进行稳定和/或战略性脱水/再水化,改善用于工程目的的土壤和沉积物的物理性质,污染渗滤液的强制和定向迁移,以及 /或非极性污染物的电渗透清洗。