发明名称 Device and method for detecting metallic contaminants in a product
摘要 A device and associated method for detecting metallic contaminants in a product using a signal received from a coil-based metal detector. A calibration module is configured to determine a product-specific, bowtie-shaped detection envelope based on calibration phase metal detector signals. A detection module is configured to compare, in a coordinate system for resistive and reactive components of a metal detector signal, a vector representation of the signal to the product-specific, bowtie-shaped detection envelope, and to indicate a presence of a metallic contaminant in the product when the vector representation of the signal extends to an area outside the bowtie-shaped detection envelope.
申请公布号 US9448323(B2) 申请公布日期 2016.09.20
申请号 US201313918285 申请日期 2013.06.14
申请人 METTLER-TOLEDO SAFELINE LTD. 发明人 Derungs Max
分类号 G01V3/08;G01V3/10;G01V3/38;G01R33/12 主分类号 G01V3/08
代理机构 Standley Law Group LLP 代理人 Standley Law Group LLP
主权项 1. A device for detecting metallic contaminants in a product using a signal received from a coil-based metal detector, the signal including a resistive component and a reactive component, the device comprising: a detection module configured to compare, in a coordinate system for the resistive and reactive components, a vector representation of the signal to a product-specific, bowtie-shaped detection envelope, and to indicate a presence of a metallic contaminant in the product when the vector representation of the signal extends to an area outside the bowtie-shaped detection envelope; and a calibration module configured to: (a) determine the product-specific, bowtie-shaped detection envelope, by receiving from the metal detector during a calibration phase, signals for one or more specimens of the product, and determining a phase orientation and dimensions of the bowtie-shaped detection envelope using the signals,(b) convert the resistive and reactive components of the signals received from the metal detector during the calibration phase into polar coordinates comprising a phase value and a magnitude value,(c) determine a product envelope by determining and storing during the calibration phase a peak magnitude value for each of the phase values,(d) define the bowtie-shaped detection envelope using the product envelope,(e) determine the dimensions of the bowtie-shaped detection envelope by aligning the phase orientation with an axis of a coordinate system selected as the alignment axis,(f) generate a quadrant overlay of the product envelope through reflection of the product envelope about the axes of the coordinate system,(g) determine measurements of the quadrant overlay, and(h) determine the dimensions of the bowtie-shaped detection envelope using the measurements; wherein the bowtie-shaped detection envelope has two wings that extend from a center of the bowtie-shaped detection envelope in opposite directions along a longitudinal axis to respective ends of the bowtie-shaped detection envelope, the widths of the ends of the bowtie-shaped detection envelope being greater than the width of the center of the bowtie-shaped detection envelope; and wherein the dimensions of the bowtie-shaped detection envelope include at least one of: (1) the width at the center of the bowtie-shaped detection envelope,(2) the width at the ends of the bowtie-shaped detection envelope,(3) the length of the bowtie-shaped detection envelope along its longitudinal axis, and(4) an acute angle between the longitudinal axis and an outer edge of the bowtie-shaped detection envelope, extending from the center to the ends of the bowtie-shaped detection envelope.
地址 Manchester GB