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    • 2. 发明专利
    • Seismometer
    • 地震仪
    • JP2013108848A
    • 2013-06-06
    • JP2011254150
    • 2011-11-21
    • Central Japan Railway Co東海旅客鉄道株式会社Mitsubishi Space Software Kk三菱スペース・ソフトウエア株式会社
    • OSATANI SHUICHIOBA KENTAROGONDA KOICHI
    • G01V1/28
    • PROBLEM TO BE SOLVED: To provide a seismometer capable of appropriately setting an initial value of a noise level.SOLUTION: A seismometer defines a noise level multiplied by a constant as a trigger level and determines that there is an earthquake when a signal detected by an acceleration sensor exceeds the trigger level (S20), and thus, when the noise level becomes too high, delay occurs in detection of an earthquake. Especially, when an initial value of the noise level is too high, it takes long hours for the noise level to become an adequate value and, during that period, there is a possibility that an earthquake cannot be observed. Therefore, if the noise level is too high, calculation is repeatedly performed until the noise level becomes an adequate value (S11-S12), and thereby the noise level is adequately set so that there is no possibility that an earthquake observation cannot be performed or the earthquake observation is delayed.
    • 要解决的问题:提供能够适当地设定噪声水平的初始值的地震计。 解决方案:地震仪将噪声电平乘以常数作为触发电平,并确定当加速度传感器检测到的信号超过触发电平时发生地震(S20),因此当噪声电平变为 太高,在发生地震时发生延误。 特别地,当噪声水平的初始值过高时,噪声水平变得足够的时间需要很长时间,并且在该期间,存在无法观察到地震的可能性。 因此,如果噪声电平过高,则重复执行计算,直到噪声电平成为适当值(S11-S12),从而可以适当地设定噪声电平,使得不可能进行地震观测, 地震观测延误。 版权所有(C)2013,JPO&INPIT
    • 3. 发明专利
    • Communication system
    • 通讯系统
    • JP2013077930A
    • 2013-04-25
    • JP2011215814
    • 2011-09-30
    • Mitsubishi Space Software Kk三菱スペース・ソフトウエア株式会社
    • OTANI NOBUHIRO
    • H04W4/90H04M11/00H04W84/06
    • PROBLEM TO BE SOLVED: To enable information collection related to a disaster using a mobile phone accustomed to ordinary use even in the event of a large-scale disaster.SOLUTION: A communication system 1 is installed at a non-communicable area in which a mobile phone 5 cannot communicate through a base station. The communication system 1 includes: a compact base station 2 for outputting a radio wave of a frequency band identical to the base station and connected to the mobile phone 5 within the range which an output radio wave reaches through a radio channel; and a satellite communication terminal 3 connected to the compact base station 2 by a LAN 6 and also connected to an information provision server 4 installed outside the non-communicable area through a satellite channel. The communication system 1 enables the mobile phone 5 to communicate with the information provision server 4, through the compact base station 2 and the satellite communication terminal 3.
    • 要解决的问题:即使在发生大规模灾难时,也可以使用习惯于普通使用的手机进行与灾难相关的信息收集。 解决方案:通信系统1安装在移动电话5不能通过基站通信的非可通信区域。 通信系统1包括:小型基站2,用于在输出无线电波通过无线电信道到达的范围内输出与基站相同并连接到移动电话5的频带的无线电波; 以及卫星通信终端3,其通过LAN6连接到紧凑型基站2,并且还通过卫星信道连接到安装在非可通信区域外部的信息提供服务器4。 通信系统1使得移动电话5能够通过紧凑基站2和卫星通信终端3与信息提供服务器4进行通信。(C)2013,JPO和INPIT
    • 4. 发明专利
    • Order determination device, oder determination program and order determination method
    • 订单确定设备,ODER确定程序和订单确定方法
    • JP2012073879A
    • 2012-04-12
    • JP2010218970
    • 2010-09-29
    • Mitsubishi Space Software Kk三菱スペース・ソフトウエア株式会社
    • SHIRONO CHIAKI
    • G06F17/30G06F13/00
    • PROBLEM TO BE SOLVED: To determine display order based on whether content of a website fits a keyword or not.SOLUTION: A score storage part 11 stores scores corresponding to each website of multiple websites. An order determination part 13 determines display order of websites hit when a retrieval execution part 12 has retrieved websites based on a prescribed keyword, based on the scores stored by the score storage part 11. A list display part 14 displays a retrieval result list as listing information showing each website according to the display order determined by the order determination part 13 on a display device. A history acquisition part 15 acquires a user's operation history for the retrieval result list. A score change part 16 changes the scores corresponding to each of the websites stored in the score storage part based on the operation history acquired by the history acquisition part 15.
    • 要解决的问题:根据网站的内容是否符合关键字来确定显示顺序。 分析存储部分11存储与多个网站的每个网站对应的分数。 订单确定部件13基于分数存储部分11存储的分数,确定检索执行部分12基于规定的关键字检索网站时的点击的显示顺序。列表显示部分14将检索结果列表显示为列表 根据由显示装置上的顺序确定部13确定的显示顺序显示每个网站的信息。 历史获取部分15获取用户的检索结果列表的操作历史。 分数变更部分16根据由历史获取部分15获取的操作历史来改变对应于存储在分数存储部分中的每个网站的评分。(C)2012年,JPO和INPIT
    • 5. 发明专利
    • Ship detection apparatus, ship detection program and ship detection method for ship detection apparatus
    • 船舶检测装置,船舶检测程序和船舶检测方法
    • JP2012063196A
    • 2012-03-29
    • JP2010206535
    • 2010-09-15
    • Mitsubishi Space Software Kk三菱スペース・ソフトウエア株式会社
    • ARII MOTOFUMI
    • G01S13/90
    • PROBLEM TO BE SOLVED: To highly accurately detect a ship based on image data obtained by radar observation.SOLUTION: A CFAR method operation part 120 specifies a pixel region of a radar image 191 on which a ship is displayed as a ship estimation region in each polarization combination by a CFAR method. A wake method operation part 121 specifies the pixel region of the radar image 191 on which the ship is displayed as a ship specification region in each polarization combination by a wake method. An SC ratio map generation part 130 sets an SC ratio (a ratio of the estimated intensity of a ship scattering wave to the estimated intensity of a sea level scattering wave) in a ship candidate area (the ship estimation area, a part of the ship estimation area) in each polarization combination to generate an SC ratio map 197. An SC ratio addition map generation part 140 adds a plurality of SC ratio maps 197a to N having respectively different polarization combinations and generates an SC ratio addition map 198. A ship detection part 150 specifies a ship area based on the SC ratio addition map 198.
    • 要解决的问题:基于通过雷达观测获得的图像数据高精度地检测船舶。 解决方案:CFAR方法操作部分120通过CFAR方法在每个偏振组合中指定在其上显示船舶的雷达图像191的像素区域作为船舶估计区域。 唤醒方法操作部分121通过唤醒方法指定在其中显示船舶的雷达图像191的像素区域作为每个偏振组合中的船舶规格区域。 SC比率图生成部130将船舶候补区域(船舶估计区域,船舶的一部分)的SC比率(船舶散射波的估计强度与海平面散射波的估计强度的比率) 估计区域),以产生SC比率图197.SC比例加法映射生成部分140将分别具有不同偏振组合的多个SC比图映射197a与N相加,并产生SC比例附加映射198。 第150部分基于SC比例附加图198指定船舶区域。版权所有(C)2012年,JPO和INPIT
    • 6. 发明专利
    • Traveling object specification device, traveling object specification program and traveling object specification method
    • 旅行对象规范设备,旅行对象规范程序和旅行对象规范方法
    • JP2012063186A
    • 2012-03-29
    • JP2010206287
    • 2010-09-15
    • Mitsubishi Space Software Kk三菱スペース・ソフトウエア株式会社
    • ARII MOTOFUMI
    • G01S13/90
    • PROBLEM TO BE SOLVED: To highly accurately associate a traveling object included in SAR image data with a traveling object which has transmitted transmission information.SOLUTION: An image information calculation part 2 calculates the speed of a traveling object included in an SAR image from the SAR image, and calculates the location of the traveling object based on the calculated speed. A complementary information specification part 3 specifies the location of the traveling object when the SAR image is picked up from transmission information transmitted from the traveling object. Then, a correlation degree calculation part 4 calculates the degree of correlation between the location calculated by the image information calculation part 2 and the location specified by the complementary information specification part 3, and an association part 5 associates the traveling object included in the SAR image with the traveling object which has transmitted the transmission information based on the degree of correlation calculated by the correlation degree calculation part 4.
    • 要解决的问题:将SAR图像数据中包括的行进对象与已发送传输信息的行进对象高度精确地相关联。 解决方案:图像信息计算部分2从SAR图像计算包括在SAR图像中的行进对象的速度,并且基于所计算的速度来计算行驶对象的位置。 互补信息规范部分3指定从从旅行对象发送的传输信息中拾取SAR图像时的行进对象的位置。 然后,相关度计算部分4计算由图像信息计算部分2计算的位置与由补充信息指定部分3指定的位置之间的相关度,关联部分5将包括在SAR图像中的行进对象关联起来 基于由相关度计算部分4计算出的相关程度已经发送了传输信息的行进对象。(C)2012年,JPO和INPIT
    • 7. 发明专利
    • Web screen restoration device, web screen restoration method and web screen restoration program
    • 网页恢复装置,网页恢复方法和网页恢复程序
    • JP2011175413A
    • 2011-09-08
    • JP2010038442
    • 2010-02-24
    • Mitsubishi Space Software Kk三菱スペース・ソフトウエア株式会社
    • WADA KOICHIOKAMOTO TAKAHIROAKASHI KEI
    • G06F13/00G06F15/00
    • PROBLEM TO BE SOLVED: To monitor a status of access from a specific user to a Web page in real time. SOLUTION: A packet capture device 110 collects a packet transmitted/received between a user terminal 201 and a Web server 202. An individual information acquisition part 121 acquires a user ID or the like acquired from the user 211 by an operator 212. A message restoration part 122 acquires a packet group including the user ID or the like from the packet capture device 110, and restores an HTTP message transmitted on the packet group. Every time acquiring a packet group including the same identification information as the packet group, an HTTP message transmitted on the acquired packet group is restored. A web screen restoration part 123 displays a screen of the Web page transmitted/received by use of the restored HTTP message, on an operator terminal 205 every time the HTTP message is restored. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:实时监控从特定用户访问网页的状态。 解决方案:分组捕获设备110收集在用户终端201和Web服务器202之间发送/接收的分组。个人信息获取部分121从操作者212获取从用户211获得的用户ID等。 消息恢复部分122从分组捕获设备110获取包括用户ID等的分组,并恢复在分组组上发送的HTTP消息。 每次获取包含与分组组相同的标识信息的分组组时,恢复在获取的分组组上发送的HTTP消息。 每当HTTP消息被恢复时,网络屏幕恢复部分123在操作员终端205上显示通过使用恢复的HTTP消息发送/接收的网页的屏幕。 版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Image processor, method for processing image, and image processing program
    • 图像处理器,处理图像的方法和图像处理程序
    • JP2010231738A
    • 2010-10-14
    • JP2009081591
    • 2009-03-30
    • Mitsubishi Space Software Kk三菱スペース・ソフトウエア株式会社
    • ADACHI KAZUKO
    • G06T7/00A61B6/00G06T1/00
    • PROBLEM TO BE SOLVED: To solve such a problem that image data of a specific object may not be detected because single detecting algorithm is performed conventionally so as to detect the image data of the specific object from image data. SOLUTION: An image processor 30 is provided with: a first detection executing section 37 which executes a first detection procedure for detecting image data of the specific object so as to detect the image data of the specific object from a first image data 301 and then generates a second image data 304 containing the image data of the detected specific object; a second detection executing section 38 which executes a second detection procedure different from the first detection procedure in order to detect image data of the specific object from the first image data 301, and then generates a third image data 305 containing the image data of the detected specific object; and an image generation section 39 which generates a new pixel on the basis of two corresponding pixels obtained from the second image data 304 containing a plurality of pixels and the third image data 305 containing a plurality of pixels, and generates specific image data 302 having the new pixel. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了解决由于常规地执行单个检测算法以从图像数据检测特定对象的图像数据而不能检测到特定对象的图像数据的问题。 解决方案:图像处理器30具有:第一检测执行部37,其执行用于检测特定对象的图像数据的第一检测过程,以便从第一图像数据301检测特定对象的图像数据 然后生成包含检测到的特定对象的图像数据的第二图像数据304; 第二检测执行部分38执行与第一检测过程不同的第二检测过程,以便从第一图像数据301检测特定对象的图像数据,然后生成包含检测到的图像数据的第三图像数据305 具体对象 以及基于从包含多个像素的第二图像数据304获得的两个对应像素和包含多个像素的第三图像数据305生成新像素的图像生成部39,并生成具有多个像素的特定图像数据302 新像素 版权所有(C)2011,JPO&INPIT
    • 9. 发明专利
    • Device, method and program for calculating vehicle speed
    • 用于计算车辆速度的装置,方法和程序
    • JP2010230373A
    • 2010-10-14
    • JP2009076199
    • 2009-03-26
    • Mitsubishi Space Software Kk三菱スペース・ソフトウエア株式会社
    • SHINDO YOSHIKUNI
    • G01S13/90G01S13/50
    • PROBLEM TO BE SOLVED: To determine the speed of a vehicle with high accuracy from observation data of a radar. SOLUTION: In this device 100 for calculating the vehicle speed, a vehicle detection unit 103 observes an area where a road is laid by a synthetic aperture radar (SAR), and detects the vehicle being present in the vicinity of the road from a radar image 201 obtained as the results of observation. A Doppler shift amount estimation unit 104 estimates a Doppler shift amount on the basis of on a distance between the position of the road 301 and the position of the vehicle in the radar image 201 detected by the vehicle detection unit 103. A speed calculation unit 105 converts the Doppler shift amount estimated by the Doppler shift amount estimation unit 104 into the speed of the vehicle detected by the vehicle detection unit 103. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:从雷达的观测数据高精度地确定车辆的速度。 解决方案:在用于计算车速的装置100中,车辆检测单元103观察通过合成孔径雷达(SAR)铺设道路的区域,并且检测出在道路附近的车辆 作为观察结果获得的雷达图像201。 多普勒频移量估计单元104基于道路301的位置与由车辆检测单元103检测到的雷达图像201中的车辆的位置之间的距离来估计多普勒频移量。速度计算单元105 将由多普勒偏移量估计单元104估计的多普勒偏移量转换成由车辆检测单元103检测到的车辆速度。(C)2011年,JPO和INPIT