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METHOD AND SYSTEM OF A MACROSCOPIC PERIMETRIC SCANNING BEAM LOCATING UP TO SIX DIFFERENT DISTINGUISHABLE MATERIAL STRUCTURES
METHOD AND SYSTEM OF A MACROSCOPIC PERIMETRIC SCANNING BEAM LOCATING UP TO SIX DIFFERENT DISTINGUISHABLE MATERIAL STRUCTURES
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机译:定位到六个不同的可区分材料结构的宏观圆周扫描束的方法和系统
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摘要
20060100352There is disclosed a method consisting in the use of a macroscopic perimetric scanning beam locating distinguishable material structures by magnetic coordination established between the device-system whereto said method is applied and the precise distinguishable material structure to be located. The emitted inoffensive electromagnetic spectrum -which electromagnetic spectrum is produced by a digital pulse generator being constituent part of the digital micro-electronic system allowing by use of a specific microprocessor and a keyboard 80 the entry and, thereby, the location of a theorically infinite number of pre-coordinated distinguishable material structures- scans at a 360 deg. angle on the earth horizontal plane, within a scanning range greater than 1000 m from the search point at a depth exceeding the 8 m. Not influenced by signature-concealing volumes, same magnetic spectrum is in position to "bombard" 19 the under-detection material structure 18 with photons createdby the motion of the electrons of the electromagnetic spectrum emitted from the device; the thus created photons endow the material structure with a particular magnetic field 98 by establishing magnetic coordination between the material structure and the unified man-and-device/system 102,1 and urge the central antenna 15 of the device 15 to permanently follow the dynamic lines of a fictive magnet 105 having for poles the device and the material structure , said central antenna being acting as amagnetic compass continuously showing the material structure to be located. An embodiment of said method is the development of an improved small-weighted, portable, energetically autonomous device bearing additionally a special LED-type pilot lamp 79 reacting upon location of the material structure, a spectrographer analysing the electromagnetic waves coming back from the material structure by display of the related data on a digital liquid crystal screen 88. The device in question is able tolocate a theorically infinite number of distinguishable material structures such as explosive materials, metals, non-metal elements, living humans, human or animal bones, drugs, water, minerals, wood, glass etc.
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