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    • 81. 发明专利
    • Landing detector for fire training device
    • 用于火灾训练装置的陆地探测器
    • JP2005134074A
    • 2005-05-26
    • JP2003372795
    • 2003-10-31
    • Babcock Hitachi Kkバブコック日立株式会社
    • KAMIMURA TADATOSHI
    • F41J5/056F41J11/00F41J1/18
    • PROBLEM TO BE SOLVED: To provide a landing detector capable of responding to both sonic and subsonic bullets with a single device, and performing precise landing position detection and landing site detection without causing a malfunction by disturbance.
      SOLUTION: The landing detector comprises a distortion detector or an acceleration detector attached to a target itself to detect a landing impact, in which a detection signal of the detector is subjected to signal processing for eliminating disturbance from the signal to pass only a landing impact signal, whereby the presence/absence of landing to the target and/or the landing position thereon are detected. This detector further comprises a filter for passing only the landing impact signal. The time difference between landing impact signals from a plurality of detectors is detected, and the time difference detection signal and attachment position information of each detector are operated, whereby the landing position to the target is detected.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够用单个装置响应声音和亚音速子弹的着陆检测器,并且执行精确的着陆位置检测和着陆位置检测,而不会由于扰动而导致故障。 解决方案:着陆检测器包括一个失真检测器或加速度检测器,该检测器或加速度检测器附着到目标本身以检测着陆冲击,其中检测器的检测信号进行信号处理,以消除来自信号的干扰仅通过 着陆撞击信号,从而检测到对目标的着陆和/或着陆位置的有无。 该检测器还包括用于仅通过着陆冲击信号的过滤器。 检测来自多个检测器的着陆碰撞信号之间的时差,并且操作每个检测器的时差检测信号和安装位置信息,从而检测到目标的着陆位置。 版权所有(C)2005,JPO&NCIPI
    • 82. 发明专利
    • Shooting training evaluation device
    • 拍摄训练评估装置
    • JP2004108740A
    • 2004-04-08
    • JP2002275780
    • 2002-09-20
    • Babcock Hitachi Kkバブコック日立株式会社
    • MIKAWA TAKASHIHIROTA MASARU
    • F41G3/26F41J5/056G01S5/22
    • PROBLEM TO BE SOLVED: To provide a shooting training evaluation device capable of evaluating where a simulated shell discharged from any shooting means arrives and whether the simulated shell hits an attack target or not.
      SOLUTION: When a shooting device 71 in a region A fires at the target 51 in a region B, vibration sensors 21 to 24 in the region A sense vibration or impact noise when firing a shell S to output a sensing signal. When the shell arrives in the region B, vibration sensors 11 to 14 in the region B sense vibration or impact noise when it arrives to output a sensing signal. A reception part 41 at an information center 4 receives the sensing signals of the vibration sensors 21 to 14, position information of the shooting device 71, and the sensing signals of the vibration sensors 11 to 14. A firing and arriving position specifying part 42 specifies a firing position in the region A of the shell and a shell arriving position in the region B based on these information and specifies that the shell is fired from the shooting device 71 based on gliding time between both points of the shell, position information of the shooting devices 71 to 74, and position information of the target. A region B evaluation part 43 determines whether the shell hits the target or not.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种能够评估从任何拍摄装置排出的模拟壳体到达何处以及模拟壳体是否碰到攻击目标的射击训练评估装置。 解决方案:当区域A中的目标51处的拍摄装置71触发时,区域A中的振动传感器21至24在发射壳体S时感测振动或冲击噪声以输出感测信号。 当壳体到达区域B时,区域B中的振动传感器11至14在其到达时感测振动或冲击噪声以输出感测信号。 信息中心4的接收部分41接收振动传感器21至14的感测信号,拍摄装置71的位置信息和振动传感器11至14的感测信号。点火和到达位置指定部分42指定 基于这些信息,壳体的区域A中的击发位置和壳体到达位置B,并且基于壳体的两个点之间的滑动时间指定壳体从射击装置71射出, 拍摄装置71至74,以及目标的位置信息。 区域B评价部43判断外壳是否碰到目标。 版权所有(C)2004,JPO
    • 84. 发明专利
    • HIT-JUDGING DEVICE
    • JPH0743097A
    • 1995-02-10
    • JP19130393
    • 1993-08-02
    • SEGA ENTERPRISES KK
    • WATANABE SEIJINAGAYAMA YOSHIOYAMAMOTO TAKASHI
    • A63F9/02F41J5/056F41J5/06F41J9/02
    • PURPOSE:To provide a hit judging device, easy in securing durability, permitting a use of a long period of time, narrow in an area required for assembling, replacement and the like, saved in labor upon replacement, and bringing no increase of cost. CONSTITUTION:A hit-judging device is provided with a target board 11, having the target face 16 of a ball (thrown matter) 15 on the surface of the target board 11, a sensor mount base (shock absorbing unit) 12, mounted on the rear surface of the target board 11 and absorbing vibration upon the collision of the ball 15 against the target face 16 while forming a dead space at the rear surface side of the target board 11, and a piezo electric sensor (detecting means) 13, arranged in the dead space so as to be separated from the target board 11 and shock absorbing unit 12 while detecting the sound of vibration generated from the target board 11 upon the collision of the ball. Further, the device is provided with a vibration absorbing body (propagation precluding means) 14, interposed between an objective matter for mounting, to which the target board 11 is attached, and pecluding the propagation of the sound of vibration from external sources to the target board 11.
    • 85. 发明专利
    • APPARATUS FOR SPOTTING POINT OF IMPACT OF ARTILLERY SHELL
    • JPH06241698A
    • 1994-09-02
    • JP5490193
    • 1993-02-20
    • BABCOCK HITACHI KK
    • YAMAZAKI MASANORI
    • F41J5/056G01S5/18H04R17/00
    • PURPOSE:To calibrate the point of impact of an artillery shell by taking wind information into consideration at the time of detecting air-borne shock wave from a projectile. CONSTITUTION:When air-borne shock wave 3 brought about by a passage of a projectile 2 is detected by transmitters 4, each detection signal is inputted to a counter 5. The counter 5 determines delay times between the detection signals, and the results of the determination are outputted to a computer 5. A timing signal is outputted to an anemometer-anemoscope 6 at a timing at which a first of the detection signals is inputted to the counter 5, and the anemometer-anemoscope 6 detects information regarding the direction and velocity of wind in the vicinity of the path of the projectile 2 and the detected information is inputted to a computer 7. Coordinates of a tentative point of impact are calculated on the basis of the results of the determination of the counter 5, and by using the results of the calculation and the information regarding the wind the velocity of the air-transmitted shock wave is obtained with consideration given to the effect of the wind. The coordinates of the tentative point of impact is calibrated according to the velocity of the wind and the coordinates of the true point of impact are calculated.
    • 86. 发明专利
    • SHOOTING GAME MACHINE
    • JPH06198072A
    • 1994-07-19
    • JP36052492
    • 1992-12-29
    • SEGA ENTERPRISES KK
    • TSUCHIDE SHINGO
    • A63F9/02A63H33/18F41G3/26F41J5/02F41J5/052F41J5/056
    • PURPOSE:To provide a simulated gun game machine for plural players to detect which target is short by simulated bullets fired from respective guns. CONSTITUTION:This game machine is provided with point display parts 9 corresponding to the numbers of simulated guns and transmitting means 51, 61 and 71 for transmitting straightly going identification signals peculiar for respective simulated guns from the simulated guns when operating the firing means of the respective simulated guns while facing plural target groups 1-4 to plural simulated gun groups 5-7 to really jet out the simulated bullets when the firing means are operated, and the plural target groups 1-4 are arranged in front of the simulated gun groups at suitable intervals. Then, the game machine is provided with receiving means R1 to R4 for receiving the identification signals transmitted from the simulated guns when the firing means are operated so as to jet out the simulated bullets from the respective simulated guns 5-7 to the respective targets, and hit detecting means M1 to M4 for detecting that the simulated bullets really jetted out of the respective simulated guns hit the respective targets from the shock of the respective targets.
    • 87. 发明专利
    • FIRING EVALUATION DEVICE
    • JPH05142329A
    • 1993-06-08
    • JP30087591
    • 1991-11-15
    • BABCOCK HITACHI KK
    • YAMADA KOUJIROUAKEGA TOSHIHARU
    • G01P15/00F41J5/056G01S5/22
    • PURPOSE:To compute the transit point of a bullet accurately even if there is a wind, by correcting the coordinate of the transit point of the shoot bullet according to output data from an anemoscope and anemometer set near a pressure sensor. CONSTITUTION:A position arithmetic unit 5 computes the position of a point in the transit course of a bullet by using previously calculated propagation speed of fire impulse waves, the reach time difference of sound pressure signals 1-3 of fire impulse waves calculated with a reach time difference arithmetic unit 4 and the known coordinate of disposition of a pressure sensor, and determines the position of the point of projectile line on quadrants of a target. At this time, when wind direction and speed signals 6, 7 are input into a position correction conditions deciding part 10, it is decided in which group of the previously classfied sixteen groups of wind according to wind direction and speed the wind belongs, signals corresponding to the names of the group and the quadrant of the target are input into a position correction conditions table part 11, and a corresponding coefficient is selected from stored impulse wave propagation velocity correction coefficients and input into a position correction arithmetic unit 12 to correct the position coordinate of the point in the transit course of the bullet computed with the unit 5.
    • 88. 发明专利
    • SENSOR PANEL
    • JPH0464899A
    • 1992-02-28
    • JP17632190
    • 1990-07-05
    • TOSHIBA TESCO KK
    • KOBAYASHI HIDEKI
    • F41J5/056
    • PURPOSE:To obtain stabilized impact information without being affected by an ambient temperature by a method wherein a shock absorbing panel is attached to the front surface of a sensor sheet through a spacer consisting of soft vinyl chloride resin and a transparent hard vinyl chloride resin substrate is attached to the rear surface of the sensor sheet through a reinforcing sheet of the same material while the whole of the sensor sheet is slanted rearward slightly. CONSTITUTION:A multitude of small spacers 9 of the same configuration, which are made of soft vinyl chloride resin, are attached to the front surface side of a sensor sheet 8 in order to keep an interval between a shock absorbing panel 1. The transparent reinforcing sheet 10 of soft vinyl chloride resin is attached to the rear surface side of the sensor sheet 8 through a double side adhesive tape or the like. A transparent hard vinyl chloride resin substrate 11 is arranged on the rear surface side of the reinforcing sheet 10 while a transparent soft vinyl chloride resin shock absorbing panel 1 is arranged on the front surface side of the spacers 9 and the sheet is slanted rearward slightly. By slanting rearward slightly, all of the front surface of the spacers 9 and the rear surface of the shock absorbing panel 1 can be contacted at all times.