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    • 31. 发明授权
    • Floating water purification free-running apparatus and water
purification method
    • 浮水净化自由运行装置和水净化方法
    • US6083405A
    • 2000-07-04
    • US233667
    • 1999-01-19
    • Ryo TanakaKatsuhisa KimataYasuo Sajika
    • Ryo TanakaKatsuhisa KimataYasuo Sajika
    • C02F1/00C02F1/28C02F7/00G05D1/00C02F1/74
    • C02F7/00C02F1/28Y02W10/15Y02W10/37
    • A floating water purification free-running apparatus includes a floating structure, a water purification section, second pumps, a drain outlet, a free-running section, a water quality sensor, a solar cell, an inverter, a sunshine recorder, and a controller. The floating structure is set afloat in a water area. The water purification section filters water in the water area by first pumps. The second pumps inject air into the water area. The drain outlet communicates with the water purification section to drain treated water. The free-running section moves the floating structure in the water area on the basis of a drain injection pressure from the drain outlet. The water quality sensor detects water quality in the water area. The solar cell receives sunlight to generate power. The inverter converts the power into an AC voltage and applies it to each pump. The sunshine recorder measures a sunshine intensity. The controller operates on the basis of the power generated by the solar cell, and controls the number of pumps to be driven in accordance with at least one of sunshine intensity information from the sunshine recorder and the AC voltage and output frequency of the inverter when making the water purification section perform water purification on the basis of an output from the water quality sensor.
    • 一种浮水净化自由运转装置,具有浮动结构,水净化部,第二泵,排水口,自由运转部,水质传感器,太阳能电池,逆变器,阳光记录器和控制器 。 浮式结构在水域内漂浮。 水净化部分通过第一泵对水区域的水进行过滤。 第二台泵将空气注入水域。 排水出口与净水部分连通以排出经处理的水。 自由运行部分基于来自排水出口的排水喷射压力移动水区域中的浮动结构。 水质传感器检测水域的水质。 太阳能电池接收太阳光发电。 逆变器将功率转换为交流电压并将其施加到每个泵。 阳光记录仪测量阳光强度。 控制器基于太阳能电池产生的电力进行操作,并且根据来自阳光记录器的日照强度信息和逆变器的交流电压和输出频率中的至少一个来控​​制要驱动的泵的数量 水净化部根据水质传感器的输出进行水净化。
    • 32. 发明授权
    • Navigation system
    • 导航系统
    • US06046688A
    • 2000-04-04
    • US982659
    • 1997-12-02
    • Tsuyoshi HigashikataRyo Tanaka
    • Tsuyoshi HigashikataRyo Tanaka
    • G09B29/10G01C21/00G01C21/36G08G1/0968G08G1/123
    • G01C21/3697G08G1/123
    • A navigation system can indicate a relationship in position between a main vehicle and a related vehicle without reducing a map picture on a display unit. A second display unit (6a) is provided independently of a first display unit (3a) for a map picture in a navigation system. The second display unit (6a) indicates a position of the related vehicle by means of a direction (11) relative to the main vehicle and a distance (12) from the main vehicle to the related vehicle. Preferably, the direction (11) and distance (12) are indicated by an arrow or characters and by digits, respectively. This makes the display obvious.
    • 导航系统可以指示主车辆和相关车辆之间的位置关系,而不减少显示单元上的地图图像。 第二显示单元(6a)独立于导航系统中用于地图图片的第一显示单元(3a)而设置。 第二显示单元(6a)通过相对于主车辆的方向(11)和从主车辆到相关车辆的距离(12)来指示相关车辆的位置。 优选地,方向(11)和距离(12)分别由箭头或字符和数字表示。 这使得显示屏显得很明显。
    • 37. 发明授权
    • Noise gate, sound collection device, and noise removing method
    • 噪声门,声音采集装置和噪声消除方法
    • US09036830B2
    • 2015-05-19
    • US13130532
    • 2009-11-18
    • Ryo TanakaNaoto Kuriyama
    • Ryo TanakaNaoto Kuriyama
    • H04B15/00G10L21/0208H03G3/34G10L21/0232G10L25/27
    • G10L21/0208G10L21/0232G10L25/27H03G3/345
    • A purpose of the invention is to provide a noise gate that can output an audio signal in which only a stationary noise is removed, without degrading an utterance voice of a speaking person. A sound collection device 1 includes an FFT processing unit 11, the noise gate 12, and an IFFT processing unit 13. The sound collection device 1 transforms a collected audio signal NET into a frequency spectrum NE′N by using the FFT processing unit 11. The noise gate 12 estimates a noise spectrum N′N of a stationary noise based on the frequency spectrum NE′N of the audio signal. The noise gate 12 decreases a signal level (a gain) of the audio signal in a case where a signal level ratio of the frequency spectrum NE′N of the audio signal to the noise spectrum N′N is less than a threshold value, and outputs the audio signal. The sound collection device 1 outputs an audio signal CO′T which is generated in such a manner that the IFFT processing unit 13 inversely transforms a frequency spectrum CO′N after removing the stationary noise N′N.
    • 本发明的目的是提供一种可以输出音频信号的噪声门,其中仅消除静止噪声,而不降低说话人的发声。 声音采集装置1包括FFT处理单元11,噪声门12和IFFT处理单元13.声音采集装置1通过使用FFT处理单元11将收集的音频信号NET转换成频谱NE'N。 噪声门12基于音频信号的频谱NE'N估计静止噪声的噪声谱N'N。 在音频信号的频谱NE'N与噪声频谱N'N的信号电平比小于阈值的情况下,噪声门12降低音频信号的信号电平(增益),以及 输出音频信号。 声音采集装置1输出音频信号CO'T,其以使得IFFT处理单元13在去除静止噪声N'N之后逆变换频谱CO'N的方式生成。
    • 38. 发明授权
    • Howling canceller
    • 嚎叫消除者
    • US08995682B2
    • 2015-03-31
    • US13383871
    • 2010-07-14
    • Ryo Tanaka
    • Ryo Tanaka
    • H04B15/00H04M9/08H04R3/02
    • H04M9/082H04R3/02
    • A howling canceller is adapted to an acoustic system having a speaker and first and second microphones. The speaker and the first microphone form a first acoustic feedback loop; the speaker and the second microphone form a second acoustic feedback loop. The howling canceller includes a howling suppressing unit for performing suppression processing in such a way that: frequency components at which howling is possibly occurring are detected in each of the sound signals picked up by the first and second microphones; the detected frequency components of the sound signals picked up by the first and second microphones are compared with each other on a per-frequency basis and a frequency component having larger power is detected; and based on the comparison results, the larger power frequency component of at least one of the sound signals picked up by the first and second microphones is suppressed.
    • 啸声消除器适用于具有扬声器和第一和第二麦克风的声学系统。 扬声器和第一麦克风形成第一声反馈回路; 扬声器和第二麦克风形成第二声反馈回路。 啸声消除器包括用于进行抑制处理的啸音抑制单元,使得可以在由第一和第二麦克风拾取的每个声音信号中检测出可能发生啸声的频率分量; 将由第一和第二麦克风拾取的声音信号的检测频率分量在每个频率的基础上彼此进行比较,并检测具有较大功率的频率分量; 并且基于比较结果,抑制由第一和第二麦克风拾取的至少一个声音信号的较大的功率频率分量。
    • 39. 发明授权
    • Lifting and drying device and method of manufacturing magnetic recording medium substrate or magnetic recording medium using the same
    • 提升干燥装置及使用其的磁记录介质基板或磁记录介质的制造方法
    • US08968484B2
    • 2015-03-03
    • US13210884
    • 2011-08-16
    • Ryuji SakaguchiRyo TanakaNorio Oshima
    • Ryuji SakaguchiRyo TanakaNorio Oshima
    • B08B1/02G11B5/84
    • G11B5/8404
    • Provided is a method of manufacturing a magnetic recording mediums comprising employing a lifting and drying device for cleaning substrates by immersing one or more disk-like substrates with a central hole into a cleaning liquid disposed in a cleaning tank and lifting and drying the substrates, the lifting and drying device including: a hanger mechanism that is inserted through the central hole of the substrates and supports a plurality of the substrates while being hung thereon; an elevation mechanism that elevates the hanger mechanism between a position where the substrates are immersed into the cleaning liquid inside the cleaning tank and a position where the substrates are lifted from the cleaning tank; and an ejection mechanism that is disposed in the cleaning tank and ejects the cleaning liquid from the downside of the hanger mechanism toward the substrate.
    • 提供了一种制造磁记录介质的方法,包括采用用于清洁基板的提升和干燥装置,将一个或多个具有中心孔的盘状基板浸入设置在清洗槽中的清洗液体中并提升和干燥基板, 提升和干燥装置,包括:吊架机构,其穿过基板的中心孔插入并支撑多个基板; 提升机构,其将所述基板浸入到所述清洗槽内的清洗液中的位置和所述基板从所述清洗槽提升的位置之间提升所述悬挂机构; 以及排出机构,其设置在所述清洗槽中,并且将所述清洗液从所述衣架机构的下侧朝向所述基板排出。
    • 40. 发明申请
    • COMMUNICATION SYSTEM, RELAY DEVICE, AND COMMUNICATION METHOD
    • 通信系统,继电器和通信方法
    • US20140154971A1
    • 2014-06-05
    • US14233572
    • 2012-05-18
    • Ryo Tanaka
    • Ryo Tanaka
    • H04B7/14H04W4/06
    • H04B7/14H04L12/4625H04L2012/40273H04W4/06H04W88/04
    • A communication system, a relay device, and a communication method are provided in a configuration where multiple communication devices are divided into multiple groups, a relay device is provided for each group, and the relay device relays data exchanges between groups. The data that is exchanged between a second relay device and an external wireless communication device is stored such that it is distributed among multiple databases of first relay units. Data received from the external communication device is stored in an individual region in the database of the first relay device and a data storage destination table in the second relay device is encrypted. If the first relay device stores data received from an ECU in the database, the second relay device is notified, and the second relay device updates the data storage destination table according to the notification.
    • 在将多个通信装置分成多组的情况下,为每组设置中继装置,中继装置中继各组之间的数据交换的结构,提供通信系统,中继装置以及通信方式。 存储在第二中继装置和外部无线通信装置之间交换的数据,使其分布在第一中继装置的多个数据库之间。 从外部通信装置接收的数据被存储在第一中继装置的数据库中的单独区域中,并且第二中继装置中的数据存储目的地表被加密。 如果第一中继装置将从ECU接收的数据存储在数据库中,则通知第二中继装置,并且第二中继装置根据通知更新数据存储目的地表。