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公开(公告)号:US20210333803A1
公开(公告)日:2021-10-28
申请号:US17369341
申请日:2021-07-07
Inventor: Shunsuke KUHARA , Kazunobu KONISHI , Stephen William JOHN , Katsuhiko ASAI
Abstract: A controller obtains a first horizontal distance and a first vertical distance which are respectively a component in a horizontal direction and a component in a vertical direction among distances from an unmanned aerial vehicle to a surface of a particular place where elevation gradually increases or decreases along the horizontal direction, decides, based on a ratio of the first horizontal distance to the first vertical distance, a movement amount by which the unmanned aerial vehicle is to be moved simultaneously in both the horizontal direction and the vertical direction, and moves the unmanned aerial vehicle based on the movement amount.
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公开(公告)号:US20210200201A1
公开(公告)日:2021-07-01
申请号:US17204410
申请日:2021-03-17
Inventor: Shunsuke KUHARA , Kazunobu KONISHI , Stephen William JOHN , Katsuhiko ASAI , Kazuo INOUE
Abstract: An unmanned aerial vehicle includes: a sensor including at least a microphone that generates sound data; and a processor. The processor determines a quality of a target sound by using the sound data generated by the microphone, acquires a positional relationship between the unmanned aerial vehicle and a sound source of the target sound by using data generated by the sensor, determines a destination to which the sound source is to move based on the quality of the target sound and the positional relationship, and presents target movement information that prompts the sound source to move toward the destination.
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公开(公告)号:US20200010190A1
公开(公告)日:2020-01-09
申请号:US16454273
申请日:2019-06-27
Inventor: Kazunobu KONISHI , Stephen William JOHN , Kazuo INOUE , Katsuhiko ASAI
IPC: B64C39/02
Abstract: An information processing method includes the following steps performed using a processor: obtaining first region information indicating a first region; obtaining first position information indicating the position of an unmanned aerial vehicle tethered to a mobile tethering body using a tether; determining, using the first region information and the first position information, a first destination which is a destination of the mobile tethering body; and moving the mobile tethering body to the first destination. The first destination is a position located at least a predetermined distance from a point which is on the boundary of the first region and located the shortest distance from the position of the unmanned aerial vehicle, in the direction from the point on the boundary of the first region to the position of the unmanned aerial vehicle.
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公开(公告)号:US20150291442A1
公开(公告)日:2015-10-15
申请号:US14746879
申请日:2015-06-23
Inventor: Akira TAOMOTO , Morio TOMIYAMA , Hisaaki GYOTEN , Norihisa MINO , Atsushi ONO , Stephen William JOHN
IPC: C02F1/04
CPC classification number: C02F1/043 , B01D1/00 , C02F1/042 , C02F2103/08 , Y02A20/128
Abstract: A desalination method disclosed herein includes: introducing a liquid to a reservoir layer to place the liquid above a water-repellent particle layer; heating and evaporating the liquid placed above the water-repellent particle layer to generate water vapor; liquefying the water vapor by a liquefying layer to obtain fresh water; determining whether or not impurities have been deposited on a sheet; and removing the sheet from a desalination apparatus if it is determined that the impurities have been deposited.
Abstract translation: 本文公开的脱盐方法包括:将液体引入储存层以将液体置于防水颗粒层上方; 加热并蒸发置于拒水颗粒层上方的液体以产生水蒸气; 通过液化层液化水蒸气以获得淡水; 确定杂质是否沉积在片材上; 并且如果确定已经沉积了杂质,则将其从脱盐设备中去除。
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公开(公告)号:US20220122576A1
公开(公告)日:2022-04-21
申请号:US17568168
申请日:2022-01-04
Inventor: Stephen William JOHN , Toshiyuki MATSUMURA , Kazunobu KONISHI , Katsuhiko ASAI , Shunsuke KUHARA
IPC: G10K11/178 , H04R1/32 , G05D1/08 , B64C27/20 , B64C39/02
Abstract: An unmanned aircraft includes: rotor blades; a duct that shrouds the rotor blades and through which airflow generated by rotation of the rotor blades passes; and a processor that controls rotation of the rotor blades. The height to width ratio of an inner space of the duct in which the rotor blades are shrouded is at least 0.5.
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公开(公告)号:US20220097850A1
公开(公告)日:2022-03-31
申请号:US17546285
申请日:2021-12-09
Inventor: Stephen William JOHN , Kazunobu KONISHI , Katsuhiko ASAI , Shunsuke KUHARA
Abstract: An unmanned aircraft includes: a microphone including a plurality of elements; and a processor that processes signals output from target elements included in the plurality of elements. In the unmanned aircraft, the processor performs a detection process of detecting a target sound signal of a target sound from the signals output from the target elements included in the plurality of elements, and changes the target elements that output the signals to be processed by the processor to select at least one target element that outputs a signal to be processed by the processor from among the plurality of elements, in accordance with a result of the detection process.
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公开(公告)号:US20210233416A1
公开(公告)日:2021-07-29
申请号:US17231679
申请日:2021-04-15
Inventor: Stephen William JOHN , Kazunobu KONISHI , Katsuhiko ASAI , Kazuo INOUE , Shunsuke KUHARA
Abstract: An unmanned aircraft includes: a sensor that includes at least a microphone that generates sound data; and a processor. The processor determines quality of a target sound using the sound data generated by the microphone, obtains a positional relationship between the unmanned aircraft and a sound source of the target sound using data generated by the sensor, and controls movement of the unmanned aircraft to control a distance between the unmanned aircraft and the sound source of the target sound, in accordance with the quality of the target sound and the positional relationship.
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公开(公告)号:US20150060260A1
公开(公告)日:2015-03-05
申请号:US14534568
申请日:2014-11-06
Inventor: Morio TOMIYAMA , Hisaaki GYOTEN , Norihisa MINO , Akira TAOMOTO , Atsushi ONO , Stephen William JOHN
CPC classification number: C02F1/04 , B01D1/00 , B01D5/006 , C02F1/043 , C02F1/048 , C02F1/10 , C02F2103/08 , Y02A20/128 , Y02W10/37
Abstract: A desalination system, etc. of the present disclosure includes: a water tank; a water-repellent particle layer that is located below the water tank and contains a plurality of water-repellent particles; a liquefying layer that is located below the water-repellent particle layer and liquefies water vapor that has passed through the water-repellent particle layer, to obtain fresh water; an introduction channel of a liquid supply channel that supplies a liquid to the water tank; and a liquid speed reduction part that is located on the introduction channel of the supply channel, and includes a wall surface crossing a flow direction of the liquid in the supply channel, for reducing a flow speed of the liquid.
Abstract translation: 本公开的脱盐系统等包括:水箱; 位于水箱下方并含有多个防水颗粒的防水颗粒层; 位于拒水粒子层下方的液化层,液化通过防水性粒子层的水蒸汽,得到淡水; 液体供应通道的引入通道,用于向水箱供应液体; 以及液体减速部,其位于供给通道的导入通道上,并且包括与供给通道中的液体的流动方向交叉的壁面,用于降低液体的流速。
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公开(公告)号:US20240367649A1
公开(公告)日:2024-11-07
申请号:US18771299
申请日:2024-07-12
Inventor: Beier HU , Motoshi ANABUKI , Kazuma TAKEUCHI , Stephen William JOHN , Shinji OHYAMA
IPC: B60W30/14
Abstract: An information processing device (or a vehicle control device) includes: a vehicle information obtainer that obtains a first moving speed of a vehicle; a communicator that obtains an operation amount of an operation related to a speed by an instrument for a remote operation of the vehicle; a vehicle speed instruction generator that generates a second moving speed based on the operation amount; and an outputter that outputs the operation amount as a moving speed control amount, when the first moving speed is lower than a first threshold, and a control amount converted from the second moving speed as the moving speed control amount, when the first moving speed is higher than or equal to a second threshold.
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公开(公告)号:US20240289730A1
公开(公告)日:2024-08-29
申请号:US18658689
申请日:2024-05-08
Inventor: Kazuhiko YAMAUCHI , Chie HIROSAWA , Yukihiro TOYOKITA , Stephen William JOHN , Masaki YAMAUCHI
IPC: G06Q10/0833 , G06Q10/083
CPC classification number: G06Q10/0833 , G06Q10/0838
Abstract: An information processing apparatus serves to manage a conveyance body. The conveyance body sequentially conveys one or more articles to a pickup site of the article. The information processing apparatus includes a processor that is connected to the conveyance body via a communication network. The processor acquires, via the conveyance body, operation information representing an operation related to a consignee's receipt at the pickup site. The processor determines a type of the consignee on the basis of the operation information. The processor adjusts a conveyance plan of an article to be conveyed to a next pickup site in accordance with a determination result of the type of the consignee.
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