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    • 1. 发明专利
    • Noise observation device and noise observation method
    • 噪声观测装置和噪声观测方法
    • JP2013053918A
    • 2013-03-21
    • JP2011192116
    • 2011-09-02
    • Rion Co Ltdリオン株式会社
    • KAIDA KEIJISHINOHARA KENJI
    • G01H17/00
    • G01S3/8083
    • PROBLEM TO BE SOLVED: To provide technique capable of correctly and rapidly identifying noises even when the noises are different kinds of aircraft noises.SOLUTION: Noises including a single shot noise and a quasi-stationary noise are detected (S100), and feature amounts indicating the change of the arrival direction of the detected noises are calculated (S200). The calculated feature amounts are smoothed (S300), and candidate points being the points of time when the sound sources of the noises are changed are extracted based on the change qualities of the feature amounts from the smoothed feature amounts (S400). The candidate point close to the single shot noise and the excessively adjacent candidate point are excluded from the extracted candidate points (S500, S600). When the single shot noise exists between the candidate points in a section divided with the remaining candidate points without being excluded, the candidate points on both sides of the single shot noise are determined to be the quasi-stationary noise of the same sound source when correlation in the histogram of azimuth angles of the candidate points on both sides satisfies fixed reference (S700).
    • 要解决的问题:即使当噪声是不同种类的飞机噪声时,提供能够正确和快速地识别噪声的技术。 检测包括单一噪声和准静止噪声的噪声(S100),并且计算表示检测到的噪声的到达方向的变化的特征量(S200)。 计算的特征量被平滑化(S300),并且基于来自平滑特征量的特征量的变化质量,提取作为改变噪声的声源的时间点的候选点(S400)。 从所提取的候补点(S500,S600)中排除接近单体噪声的候选点和过度相邻的候补点。 当在不排除剩余候选点的部分中的候选点之间存在单独的噪声时,单相噪声的两侧的候选点在相关时被确定为相同声源的准静态噪声 在两侧的候选点的方位角的直方图中,满足固定的基准(S700)。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Noise observation system and noise observation method
    • 噪声观测系统和噪声观测方法
    • JP2012198063A
    • 2012-10-18
    • JP2011061280
    • 2011-03-18
    • Rion Co Ltdリオン株式会社
    • OKAZAKI MICHINARIMOTOYOSHI JUNICHIKAIDA KEIJISHINOHARA KENJITAZAKI MASARU
    • G01H3/00
    • G01H3/10G01S3/8083G01S3/86
    • PROBLEM TO BE SOLVED: To provide a technology capable of dealing with a determination of ground noise generated from an aircraft or the like even under a complicated noisy environment such as around an airfield.SOLUTION: A microphone unit 10 is installed within an airfield, and window areas Wa-Wc are specified individually for each zone that may become a noise generation source such as a parking area 20, a taxing path 30, an engine test operation area 60 or the like. The microphone unit 10 is utilized for sound identification according to a three-axis correlation of X axis, Y axis and Z axis, thereby calculating an arrival direction vector even for ground noise. By specifying the window areas Wa-Wc from a positional relationship between an observation point P and a zone in which noise is actually generated, it can be identified from a ratio of the arrival direction vector which one of the window areas Wa-Wc the ground noise comes from.
    • 要解决的问题:即使在诸如机场周围的复杂的嘈杂环境下,提供能够处理从飞机等产生的地面噪声的确定的技术。 解决方案:麦克风单元10安装在机场内,并且可以为可能成为噪声发生源的每个区域单独指定窗口区域Wa-Wc,例如停车区域20,征税路径30,发动机测试操作 区域60等。 麦克风单元10用于根据X轴,Y轴和Z轴的三轴相关的声音识别,从而计算即使对于地面噪声的到达方向矢量。 通过从观察点P和实际产生噪声的区域之间的位置关系指定窗口区域Wa-Wc,可以从窗口区域Wa-Wc中的哪一个到达方向矢量的比率来识别地面 噪音来自。 版权所有(C)2013,JPO&INPIT
    • 3. 发明专利
    • Noise observation device and noise observation method
    • 噪声观测装置和噪声观测方法
    • JP2014035287A
    • 2014-02-24
    • JP2012177181
    • 2012-08-09
    • Rion Co Ltdリオン株式会社
    • SHINOHARA KENJIKAIDA KEIJI
    • G01H3/00
    • G01S3/8083G01H3/00
    • PROBLEM TO BE SOLVED: To provide a technique which is capable of discriminating noise by using a cross correlation method, even in the case of the simultaneous occurrence of a plurality of kinds of noise under a noisy environment where a plurality of sound sources exist, like an airport.SOLUTION: A noise observation device includes: a cross correlation coefficient calculation unit 112 which uses four microphones M0 to M3 which are arranged so that two of them are located on each of axial lines of an X axis, a Y axis, and Z axis, and calculates cross correlation coefficients of sounds reaching the microphones M0 to M3 with respect to each axial line; a peak search processing unit 114 which extracts a plurality of time delays in which cross correlation coefficients show a peaking trend, in descending order of cross correlation coefficient; a segmentation processing unit 116 which collects variation of the plurality of time delays in a time region to form a set of continuous time delays with respect to each axial line; a normalized cross correlation coefficient calculation unit 122 which calculates normalized cross correlations between different axial lines with respect to sets of time delays per axial line; and a segment integration processing unit 124 which combines sets of time delays for the same sound source in accordance with normalized cross correlation functions.
    • 要解决的问题:为了提供能够通过互相关方法来辨别噪声的技术,即使在存在多个声源的嘈杂环境下同时出现多种噪声的情况下,如 机场。解决方案:噪声观测装置包括:互相关系数计算单元112,其使用四个麦克风M0至M3,其布置成使得它们中的两个位于X轴,Y轴和 Z轴,并且计算相对于每个轴线到达麦克风M0至M3的声音的相关系数; 峰值搜索处理单元114,以交叉相关系数的递减顺序提取互相关系数显示峰值趋势的多个时间延迟; 分割处理单元116,其收集时间区域中的多个时间延迟的变化,以形成关于每个轴线的一组连续的时间延迟; 归一化互相关系数计算单元122,其计算相对于每轴线的时间延迟集合的不同轴线之间的归一化互相关; 以及段积分处理单元124,其根据归一化的互相关函数组合用于相同声源的时间延迟。
    • 4. 发明专利
    • Noise measuring device
    • 噪声测量装置
    • JP2011237323A
    • 2011-11-24
    • JP2010110125
    • 2010-05-12
    • Rion Co Ltdリオン株式会社
    • NAKAJIMA YASUTAKANAITO DAISUKEOSHIMA SYUNYAKAIDA KEIJIMARUYAMA YOICHI
    • G01H3/00
    • PROBLEM TO BE SOLVED: To provide a noise measuring device capable of identifying the type of a moving object and measuring the noise attributable to that moving object by a simple method.SOLUTION: A noise measuring device that references pre-collected sounds emitted by mobile objects and identifies the type of a mobile object by the sound emitted by the mobile object comprises a microphone 1 that converts a sound emitted by a mobile object into a sound measuring signal, a feature parameter calculating means 7 that calculates a feature signal in which elements of the feature parameter extracted from the sound measuring signal into which conversion was made by the microphone 1 into an array of at least two values, a classification function coefficient calculating means 8 that calculates a classification function coefficient based on the feature parameter calculated from pre-collected sound measuring signals of the mobbing object, a classification class calculating means 9 that calculates class values of classification functions based on the classification function coefficient calculated by the classification function coefficient calculating means 8 and the feature parameter of the moving object, and an identifying means 10 that identifies the type of the moving object from the class value of the classification function calculated by the classification class calculating means 9.
    • 要解决的问题:提供能够通过简单的方法识别移动物体的类型并测量归因于该移动物体的噪声的噪声测量装置。 解决方案:一种噪声测量装置,其引用由移动对象发射的预收集的声音并且通过由移动对象发射的声音识别移动对象的类型包括麦克风1,其将由移动对象发射的声音转换为 声音测量信号,特征参数计算装置7,其计算特征信号,其中从声音测量信号提取的特征参数的元素由麦克风1转换成至少两个值的阵列,分类函数系数 计算装置8,其基于由所述移动对象的预先收集的声音测量信号计算的特征参数来计算分类函数系数;分类类别计算装置9,基于由所述分类计算的分类函数系数,计算分类函数的类值 函数系数计算装置8和特征参数 移动物体的偏移量,以及根据由分类等级计算装置9计算的分类函数的类值来识别移动物体的类型的识别装置10.版权所有(C)2012,JPO&INPIT
    • 5. 发明专利
    • Aircraft noise monitoring method and aircraft noise monitoring device
    • 飞机噪声监测方法和飞机噪声监测装置
    • JP2013061155A
    • 2013-04-04
    • JP2011197872
    • 2011-09-12
    • Rion Co Ltdリオン株式会社
    • KAIDA KEIJIAOYAMA HIDEJI
    • G01S13/74
    • PROBLEM TO BE SOLVED: To provide a noise monitoring method capable of increasing the performance of discriminating aircraft noise by use of an electric wave discrimination method in addition to an acoustic discrimination method.SOLUTION: In an aircraft noise monitoring device, a receiving part 20 receives a response signal from an aircraft through a radar receiving antenna 12 installed at the periphery of an airport, the response signals received within a predetermined period are stored in a temporary memory 24, a time interval analyzing part 26 calculates time intervals of all response signals in a chronological order, a histogram creating part 28 creates a histogram from the calculated time intervals, and a filtering part 30 filters a response signal while defining a time gate being a time interval having the highest frequency in the histogram.
    • 解决的问题:提供一种噪声监测方法,除了声学鉴别方法之外,还可以通过使用电波判别方法来提高判别飞行器噪音的性能。 解决方案:在飞机噪声监测装置中,接收部分20通过安装在机场周边的雷达接收天线12从飞行器接收响应信号,在预定时段内接收的响应信号被存储在临时 存储器24,时间间隔分析部26按时间顺序计算所有响应信号的时间间隔,直方图生成部28从计算出的时间间隔生成直方图,滤波部30对响应信号进行滤波,同时定义时间门 在直方图中具有最高频率的时间间隔。 版权所有(C)2013,JPO&INPIT