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    • 46. 发明申请
    • MEANS AND METHOD FOR 6 DEGREES OF FREEDOM DISPLACEMENT SENSOR
    • 6自由度位移传感器的方法和方法
    • WO2016183618A1
    • 2016-11-24
    • PCT/AU2016/000176
    • 2016-05-20
    • ROYAL MELBOURNE INSTITUTE OF TECHNOLOGY
    • SMITH, Robert MastersonFUSS, Franz Konstantin
    • G01B9/02G01B11/00G01D5/00
    • G01B9/02027G01B9/02021G01B9/02032
    • A displacement sensor comprising at least 3 interferometers and a three dimensional mirror in which the three dimensional mirror is attached to a solid body and interferometer fixed components are independently attached to a solid body and displacement of a solid body to 6 DoF is derived from the displacement of the three dimensional mirror. The three dimensional mirror is mounted on one part of a solid body and the interferometer fixed components on another part of said solid body or a part of a different solid body so that movement of one part relative to the other can be measured to 6DoF. Three interferometers are preferably orthogonally arranged about a three dimensional mirror to derive displacement of the three dimensional mirror to 6 DoF. A method of measuring displacement of a solid body includes the steps of deriving the three 3 dimensional position vectors of the three dimensional mirror from the three 3 dimensional mirror normal angles and the three 3 dimensional mirror tilt axis angles obtained from the 3 interferograms, and the linear displacement and direction of linear displacement of the three dimensional mirror is derived from the direction of movement of the fringe lines across the 3 interferograms and the three dimensional mirror position vectors. A method of overcoming linear displacement errors in a first direction as a consequence of linear displacement in a second direction when using interferometers arranged about a three dimensional mirror to measure displacement to 6 degrees of freedom.
    • 包括至少3个干涉仪的位移传感器和三维反射镜,其中三维反射镜附接到固体并且干涉仪固定部件独立地附接到固体,并且固体从6位移到6 DoF 的三维镜。 三维反射镜安装在固体的一部分上,并且干涉仪将固定部件固定在所述固体的另一部分上或不同固体的一部分上,使得可以将一部分相对于另一部分的运动测量为6DF。 优选地,三个干涉仪围绕三维反射镜正交布置以导致三维反射镜的位移到6DoF。 测量实体位移的方法包括以下步骤:从三个三维反射镜法线角度和从3个干涉图获得的三个三维镜面倾斜轴角度导出三维反射镜的三个三维位置矢量,以及 线性位移和三维反射镜的线性位移方向是通过3条干涉图和三维立体镜位置矢量的条纹线的移动方向得出的。 当使用布置在三维反射镜周围的干涉仪来测量位移至6自由度时,作为第二方向上的线性位移的结果,在第一方向克服线性位移误差的方法。
    • 47. 发明申请
    • GAS SENSOR NANOCOMPOSITE MEMBRANES
    • 气体传感器纳米复合膜
    • WO2016033638A1
    • 2016-03-10
    • PCT/AU2015/000540
    • 2015-09-02
    • ROYAL MELBOURNE INSTITUTE OF TECHNOLOGY
    • KALANTAR-ZADEH, KouroshBEREAN, KyleHA, NamOU, Jian Zhen
    • G01N27/407B01D53/22
    • G01N27/407A61B5/01A61B5/073A61B5/14539A61B5/14542A61B5/42A61B5/6861A61B2562/0247B01D53/22B01D69/141B82Y30/00C01B31/0206C01G3/02C01G45/02C01G49/02C08F38/02C08G64/00C08G77/20G01N27/40
    • A gas permeable, liquid impermeable membrane for use with gas sensors in which the membrane consists of a film forming polymer which incorporates one or more nanoparticles selected to improve one or more of the following the permeability to gases, to selectively impede or exclude permeation by some gases while facilitating the passage of selected gases through the membrane, to inhibit microbial growth on the membrane. The membranes are useful in capsules adapted to be introduced into the stomach and Gl tract of a mammal which consists of a capsule shaped container consisting of a wall material capable of being bio compatible with the Gl tract and being adapted to protect the electronic and sensor devices contained in the capsule. The capsule contains gas composition sensors, pressure and temperature sensors, a micro controller, a power source and a wireless transmission device. The microprocessor is programmed to receive data signals from the sensors and convert the signals into gas composition and concentration data and temperature and pressure data suitable for transmission to an external computing device. The capsule wall incorporates gas permeable nano-composite membranes with embedded catalytic and nano void producing nanoparticles which enhance the operation, selectivity and sensitivity of the gas sensors. The nanoscomposite membranes also reduce the risk of microorganism colonization on the surface that increases the life time of the capsule.
    • 一种与气体传感器一起使用的透气的液体不可渗透的膜,其中膜由成膜聚合物组成,该成膜聚合物包含一种或多种被选择用于改善一种或多种以下气体渗透性的纳米颗粒,以选择性地阻止或排除某些渗透 气体,同时促进所选择的气体通过膜,以抑制膜上的微生物生长。 所述膜适用于适于引入哺乳动物的胃和胃肠道的胶囊,所述胶囊形容器由能够与G1道生物相容的壁材料组成,并适于保护电子和传感器装置 容纳在胶囊中。 胶囊包含气体成分传感器,压力和温度传感器,微控制器,电源和无线传输装置。 微处理器被编程为从传感器接收数据信号,并将信号转换成适合于传输到外部计算设备的气体成分和浓度数据以及温度和压力数据。 胶囊壁包含具有嵌入的催化和纳米空隙产生纳米颗粒的透气纳米复合膜,其增强气体传感器的操作,选择性和灵敏度。 纳米复合膜还降低了表面上微生物定居的风险,这增加了胶囊的使用寿命。
    • 49. 发明申请
    • FILTER WINDOWS FOR FOURIER TRANSFORM SIGNAL COMPRESSION
    • 用于FOURIER变换信号压缩的滤波窗口
    • WO1995001673A1
    • 1995-01-12
    • PCT/AU1994000364
    • 1994-06-30
    • ROYAL MELBOURNE INSTITUTE OF TECHNOLOGYSMART, Gregory, KeithBRADLEY, Alan, Bernard
    • ROYAL MELBOURNE INSTITUTE OF TECHNOLOGY
    • H03M07/30
    • H04B1/66
    • A method of compressing the required bandwidth of an input signal includes subjecting the input signal to an input filter window (23) which is a first function of time h(r). The signal is then transformed to the frequency domain (24), and a modified signal is synthesised in the frequency domain (32). The modified signal is inversely transformed to the time domain (51) to derive an intermediate signal, which is subjected to an output filter window (56) which is a second function of time f(r) to derive a synthesised output signal (58) of compessed bandwidth with respect to the input signal. The functions h(r) and f(r) are different but satisfy a predetermined relationship independent of the synthesis, selected to optimise the reconstruction of the input signal in the synthesised output signal.
    • 压缩输入信号的所需带宽的方法包括将输入信号经受作为时间h(r)的第一函数的输入滤波器窗口(23)。 然后将信号变换到频域(24),并且在频域(32)中合成修改的信号。 经修改的信号被逆变换到时域(51)以导出中间信号,其经受作为时间f(r)的第二函数的输出滤波器窗口(56)以导出合成输出信号(58) 相对于输入信号的带宽。 函数h(r)和f(r)是不同的,但是满足独立于合成的预定关系,被选择为优化合成输出信号中输入信号的重构。