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公开(公告)号:US20230242004A1
公开(公告)日:2023-08-03
申请号:US18003196
申请日:2021-05-21
Applicant: NIO TECHNOLOGY (ANHUI) CO., LTD
Inventor: Yongjie LI , Ning ZHANG , Jia CAO , Lang ZHENG , Chao YANG , Lijian XIA
CPC classification number: B60L53/80 , B60L50/64 , B60L50/66 , B66F7/28 , B60L2200/26 , B60L2240/10
Abstract: The disclosure provides a battery swap platform, a battery swap station, and a battery swap method. The battery swap platform includes a parking mechanism, a battery mounting/dismounting mechanism, and a battery temporary storage mechanism. The battery mounting/dismounting mechanism can dismount a battery from a vehicle parked on the parking mechanism and deliver the dismounted battery to the battery temporary storage mechanism for temporary storage, or obtain a battery from the battery temporary storage mechanism and mount the battery on the vehicle parked on the parking mechanism. In this way, in the battery swap platform and the battery swap station provided in the disclosure, the provision of the battery temporary storage mechanism can shorten the battery transport duration, thereby reducing the total time taken for vehicle battery swap.
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公开(公告)号:US11708004B2
公开(公告)日:2023-07-25
申请号:US17794665
申请日:2021-01-25
Applicant: AULTON NEW ENERGY AUTOMOTIVE TECHNOLOGY GROUP , SHANGHAI DIANBA NEW ENERGY TECHNOLOGY CO., LTD.
Inventor: Jianping Zhang , Chunhua Huang
CPC classification number: B60L53/80 , B60K1/04 , B60K2001/0472
Abstract: A clamping vehicle lane control method and system, an electronic device and a storage medium. A clamping vehicle lane (1) has a vehicle carrying plane (11) that is used to carry an electric vehicle (9) and that can be raised and lowered. The clamping vehicle lane control method comprises: controlling the vehicle carrying plane (11) to be raised and lowered between any two heights among an initial height, a battery removal height, and a battery installation height. The height of the vehicle carrying plane (11) is controlled so that the vehicle carrying plane (11) may meet battery replacement requirements of each stage, thus shortening the overall battery replacement time, and improving the efficiency of battery replacement.
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公开(公告)号:US20230219454A1
公开(公告)日:2023-07-13
申请号:US17930276
申请日:2022-09-07
Applicant: CONTEMPORARY AMPEREX TECHNOLOGY CO., LIMITED
Inventor: Chao WANG , Chunshu LAN , Jihai XIE
Abstract: This application provides a battery swap method, a battery swap station, and an electrical apparatus. The battery swap method includes: obtaining identity information of an electrical apparatus which requests a swap of a battery; authenticating the identity information; establishing communication with the electrical apparatus in response to a determination that the identity information passes the authentication; determining whether the battery in the electrical apparatus and a shared battery in the battery swap station satisfy a battery swap condition; and swapping the battery in the electrical apparatus with the shared battery in the battery swap station in response to a determination that at least one of the battery in the electrical apparatus and the shared battery in the battery swap station satisfies the battery swap condition. The batteries are authenticated in addition to authentication of the electrical apparatus, thereby improving reliability and security of authentication during a battery swap.
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公开(公告)号:US20230211699A1
公开(公告)日:2023-07-06
申请号:US17851259
申请日:2022-06-28
Applicant: Hyundai Motor Company , Kia Corporation
Inventor: Jung Hyun Lee
CPC classification number: B60L58/12 , B60L53/20 , B60L53/80 , H02J7/0013 , H02J7/005 , H02J7/342 , H02J7/007194 , H02J7/00712 , H02J7/00032 , H02J2207/20
Abstract: An electrified vehicle may be additionally equipped with a swappable battery, and a power source management method for the same. The electrified vehicle includes a driving power unit including a motor and an inverter, a main battery unit electrically connected to the driving power unit, the main battery unit including a first battery and a first BMS for controlling the first battery, the main battery unit being fixedly disposed in the electrified vehicle, and a DC converter electrically connected to the main battery unit, the DC converter including a connector, in which, when a swappable battery unit including a second battery and a second BMS for controlling the second battery may be connected to the connector, the first BMS acquires second battery information output by the second BMS.
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公开(公告)号:US20230204375A1
公开(公告)日:2023-06-29
申请号:US18087815
申请日:2022-12-23
Applicant: Prime Planet Energy & Solutions, Inc.
Inventor: Kohki NAKAMURA , Yasuhiko IKEDA , Harumi AZUMA , Akira KUBO , Yutaka YAMAUCHI , Reizo MAEDA
CPC classification number: G01C21/3679 , B60L53/80 , B60L58/12 , G01C21/3697 , B60L2250/16 , G06Q30/0283
Abstract: An guidance system of an electric mobility vehicle includes a registration section in which replacement places of replacement batteries for the electric mobility vehicle are registered, an estimation section that estimates a possible travel distance of the electric mobility vehicle from a battery remaining capacity of the electric mobility vehicle, and a display section that displays replacement places within a range of the estimated possible travel distance of the electric mobility vehicle among the replacement places of the replacement batteries registered in the registration section on map information.
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公开(公告)号:US20230155397A1
公开(公告)日:2023-05-18
申请号:US18099890
申请日:2023-01-20
Applicant: Entrantech Inc.
Inventor: Kong-Chen Chen
CPC classification number: H02J7/0025 , B60L53/80 , H02M1/0029 , H02J7/00308 , H02J7/00309 , H02J7/00304 , H02M7/25
Abstract: A control switch incorporating a 1:2 demultiplexer is used to control timing for a concurrent switching, break-before-make and make-before-break power multiplexing, and is configurable to link a plurality of the control switches into a control chain to perform sequential charging, sequential discharging, parallel charging, parallel discharging, and concurrent sequential charging and discharging for a plurality of batteries coupled to the control chain in a power system.
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公开(公告)号:US11642952B2
公开(公告)日:2023-05-09
申请号:US17387337
申请日:2021-07-28
Applicant: BRIGGS & STRATTON, LLC
Inventor: Jeffrey Zeiler , Robert John Koenen , Jacob Schmalz , Albert Liu , Nick Zeidler , Scott Funke , David Procknow
IPC: B60K1/04 , H01M10/44 , H02J7/00 , B60L53/80 , A01D69/02 , H01M50/213 , B60L50/60 , B60L58/22 , H01M10/42 , H02J7/14
CPC classification number: B60K1/04 , A01D69/02 , B60L50/66 , B60L53/80 , B60L58/22 , H01M10/4257 , H01M10/441 , H01M50/213 , H02J7/0016 , H02J7/0024 , H02J7/0025 , H02J7/0045 , H02J7/0063 , B60K2001/0416 , B60K2001/0455 , B60K2001/0466 , B60L2200/42 , B60Y2200/124 , B60Y2200/15 , B60Y2200/223 , H01M2010/4271 , H01M2220/20 , H02J7/14 , H02J7/1423 , H02J7/1438 , Y02T10/70
Abstract: A riding lawn mower comprising, a pair of rear drive wheels, a pair of front wheels, a deck positioned between the pair of front wheels and the pair of rear drive wheels, a rotatable cutting blade, and multiple battery packs removably coupled to the riding lawn mower and structured to provide power to the riding lawn mower, each battery pack graspable and removable by a user, wherein the multiple battery packs jointly provide power to the riding lawn mower.
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公开(公告)号:US20190241090A1
公开(公告)日:2019-08-08
申请号:US16342643
申请日:2017-05-25
Applicant: HONDA MOTOR CO., LTD.
Inventor: Tsutomu Wakitani , Satoshi Haneda
CPC classification number: B60L53/80 , B60L50/50 , B60L50/60 , B60L53/66 , B60L58/12 , G01C21/36 , G08G1/0968 , Y02T10/7005 , Y02T90/161
Abstract: An information processing device that is capable of executing processing corresponding to execution of replacement of an energy supply unit at a facility. A control server is provided with a control server control unit for acquiring device-related information on a driving device in which a mounted energy supply unit serving as an energy supply unit for supplying energy to a power source is replaceably mounted, and selecting a facility recommended to perform replacement of the energy supply unit out of facilities that store stored energy supply units serving as energy supply units replaceable with the mounted energy supply unit, and that are able to replace the mounted energy supply unit with one of the stored energy supply units.
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公开(公告)号:US20190207398A1
公开(公告)日:2019-07-04
申请号:US16236152
申请日:2018-12-28
Applicant: Gogoro Inc.
Inventor: I-Fen Shih , Yun-Chun Lai , Sheng-Chin Chuang , Daniel Vickery , Hok-Sum Horace Luke
IPC: H02J7/00 , G01R31/382 , G01R31/396 , B60L53/68 , B60L53/80
CPC classification number: H02J7/0027 , B60L53/80 , G06Q30/0202 , G06Q50/06 , H02J7/0045 , H02J7/0073
Abstract: The present disclosure relates to methods and associated systems for charging exchangeable energy storage devices positioned in a device-exchange station. The method includes, for example, (1) receiving demand information; (2) determining a charging plan for the device-exchange station at least partially based on a state-of-charge (SoC) of each of the exchangeable energy storage devices positioned in the device-exchange station, the demand information, and a charging threshold for each of the exchangeable energy storage devices positioned in the device-exchange station; (3) generating a charging command for each of the exchangeable energy storage devices based on the charging rule for each of the exchangeable energy storage devices; and (4) transmitting the charging commands to the device-exchange station.
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公开(公告)号:US20190207393A1
公开(公告)日:2019-07-04
申请号:US16236036
申请日:2018-12-28
Applicant: Gogoro Inc.
Inventor: I-Fen Shih , Yun-Chun Lai , Sheng-Chin Chuang , Daniel Vickery , Hok-Sum Horace Luke
CPC classification number: H02J7/0027 , B60L53/80 , G06Q30/0202 , G06Q50/06 , H02J7/0045 , H02J7/0073
Abstract: The present disclosure relates to methods and associated systems for charging exchangeable energy storage devices positioned in a device-exchange station. The method includes, for example, (1) receiving demand information; (2) determining a charging plan for the device-exchange station at least partially based on a state-of-charge (SoC) of each of the exchangeable energy storage devices positioned in the device-exchange station, the demand information, and an available power of the device-exchange station; (3) generating a charging command for each of the exchangeable energy storage devices based on the charging rule for each of the exchangeable energy storage devices; and (4) transmitting the charging commands to the device-exchange station.
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