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公开(公告)号:US20220137608A1
公开(公告)日:2022-05-05
申请号:US17452163
申请日:2021-10-25
申请人: Robert Bosch Gmbh
IPC分类号: G05B19/418 , G06K9/62
摘要: A method for setting operating parameters of a system, in particular, a manufacturing machine, with the aid of Bayesian optimization of a data-based model, which (in the Bayesian optimization) is trained to output a model output variable, which characterizes an operating mode of the system, as a function of the operating parameters. The training of the data-based model takes place as a function of at least one experimentally ascertained measured variable of the system and the training also taking place as a function of at least one simulatively ascertained simulation variable. The measured variable and the simulation variable each characterize the operating mode of the system. The measured variable and/or the simulation variable is transformed during training with the aid of an affine transformation.
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公开(公告)号:US20170059710A1
公开(公告)日:2017-03-02
申请号:US15306205
申请日:2015-03-03
申请人: Robert Bosch GmbH
CPC分类号: G01S17/42 , G01S7/4817 , G01S7/4916 , G01S17/32 , G01S17/58 , H01S5/183
摘要: An object recognition device having a VCSEL Doppler sensor and an MEMS scanner; the MEMS scanner having at least one deflectable MEMS mirror for scanning an angular region using a laser beam from the VCSEL Doppler sensor; the VCSEL Doppler sensor being connected to a Doppler control and evaluation element that is adapted for determining the velocity and/or the distance of an object.
摘要翻译: 一种具有VCSEL多普勒传感器和MEMS扫描仪的物体识别装置; 所述MEMS扫描器具有至少一个可偏转的MEMS镜,用于使用来自所述VCSEL多普勒传感器的激光束扫描角度区域; VCSEL多普勒传感器连接到适于确定物体的速度和/或距离的多普勒控制和评估元件。
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公开(公告)号:US20170052256A1
公开(公告)日:2017-02-23
申请号:US15305737
申请日:2015-03-26
申请人: Robert Bosch GmbH
发明人: Christoph Delfs , Frank Fischer , Reiner Schnitzer , Niklas Dittrich , Heiko Ridderbusch , Gael Pilard
CPC分类号: G01S17/42 , G01S7/4814 , G01S7/4817 , G01S17/58 , G01S17/89 , G02B26/0833 , H01S5/0261 , H01S5/0264 , H01S5/14 , H01S5/183 , H01S5/18341
摘要: A module for measuring an object located in a position finding zone; the module being configured for generating a primary beam; the module having a scanning mirror structure; the scanning mirror structure being controllable to allow the primary beam to execute a scanning movement within the position finding zone; the module being configured to allow a secondary signal to be detected when the secondary signal is produced in response to the interaction of the primary beam with the object in a deflection position of the scanning mirror structure; the module being configured to generate position finding information as a function of the deflection position of the scanning mirror structure; the module featuring a semiconductor laser component; the semiconductor laser component being configured for producing the primary beam and for detecting the secondary signal.
摘要翻译: 一种用于测量位于位置查找区中的物体的模块; 所述模块被配置用于产生主波束; 所述模块具有扫描镜结构; 扫描镜结构是可控制的,以允许主光束在位置查找区域内执行扫描运动; 所述模块被配置为当响应于所述主光束与所述物体在所述扫描镜结构的偏转位置的相互作用而产生所述次级信号时,允许检测到次级信号; 所述模块被配置为产生作为所述扫描镜结构的偏转位置的函数的位置查找信息; 该模块具有半导体激光器部件; 所述半导体激光器部件被配置为用于产生所述主光束并用于检测所述次级信号。
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公开(公告)号:US10386488B2
公开(公告)日:2019-08-20
申请号:US15311588
申请日:2015-05-26
申请人: Robert Bosch GmbH
发明人: Heiko Ridderbusch
摘要: A vehicle LIDAR system, including: a solid-state laser having a brightness of at least 100 kW/(mm2 sr), which is designed to emit laser pulses having a wavelength of at least 900 nm and a maximum power per laser pulse of at least 50 W; at least one movably situated mirror for deflecting the laser pulses in the direction of objects to be detected; a receiver for detecting the laser pulses reflected by the objects.
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公开(公告)号:US09698560B2
公开(公告)日:2017-07-04
申请号:US15030538
申请日:2014-08-25
申请人: Robert Bosch GmbH
发明人: Heiko Ridderbusch
IPC分类号: H01S3/11 , H01S3/16 , F02P23/04 , H01S3/06 , H01S3/04 , H01S3/08 , H01S3/094 , H01S3/0941 , H01S3/113 , H01S5/183
CPC分类号: H01S3/1698 , F02P23/04 , H01S3/0407 , H01S3/0612 , H01S3/0627 , H01S3/08 , H01S3/094 , H01S3/094084 , H01S3/09415 , H01S3/11 , H01S3/113 , H01S3/1618 , H01S3/164 , H01S3/1643 , H01S3/1696 , H01S5/183
摘要: A laser ignition system, in particular for an internal combustion engine, including a vertical emitter and a laser-active crystal, the laser-active crystal being doped in at least some areas using ytterbium, the ytterbium-doped area having a length of 200 μm to 7000 μm. The monolithic laser is based on a YAG or LuAG host crystal having 3 differently doped areas: a laser-active ytterbium-doped area, an undoped area which determines the resonator length and therefore the pulse duration, and a chromium-doped or vanadium-doped area for the passive Q-switch. The resonator is delimited by 2 mirrors.
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公开(公告)号:US20150377207A1
公开(公告)日:2015-12-31
申请号:US14766343
申请日:2014-02-07
申请人: ROBERT BOSCH GMBH
发明人: Heiko Ridderbusch , Joern Ostrinsky
摘要: A laser ignition system has: at least one arrangement for producing a pulsed laser beam; and at least one arrangement for focusing the produced pulsed laser beam onto a focus zone, e.g., in order to ignite a combustible gas mixture in an internal combustion engine or a burner. The laser ignition system is designed to produce a pulsed laser beam having a normed fluence volume greater than 0.1.
摘要翻译: 激光点火系统具有至少一个用于产生脉冲激光束的装置; 以及用于将产生的脉冲激光束聚焦到聚焦区域上的至少一个布置,例如为了点燃内燃机或燃烧器中的可燃气体混合物。 激光点火系统被设计成产生具有大于0.1的规范注量的脉冲激光束。
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公开(公告)号:US09856849B2
公开(公告)日:2018-01-02
申请号:US14766343
申请日:2014-02-07
申请人: Robert Bosch GmbH
发明人: Heiko Ridderbusch , Joern Ostrinsky
摘要: A laser ignition system has: at least one arrangement for producing a pulsed laser beam; and at least one arrangement for focusing the produced pulsed laser beam onto a focus zone, e.g., in order to ignite a combustible gas mixture in an internal combustion engine or a burner. The laser ignition system is designed to produce a pulsed laser beam having a normed fluence volume greater than 0.1.
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公开(公告)号:US20170090034A1
公开(公告)日:2017-03-30
申请号:US15311588
申请日:2015-05-26
申请人: Robert Bosch GmbH
发明人: Heiko Ridderbusch
CPC分类号: G01S17/936 , G01S7/4814 , G01S7/4817 , G01S17/42 , H01S5/183
摘要: A vehicle LIDAR system, including: a solid-state laser having a brightness of at least 100 kW/(mm2 sr), which is designed to emit laser pulses having a wavelength of at least 900 nm and a maximum power per laser pulse of at least 50 W; at least one movably situated mirror for deflecting the laser pulses in the direction of objects to be detected; a receiver for detecting the laser pulses reflected by the objects.
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公开(公告)号:US20160268767A1
公开(公告)日:2016-09-15
申请号:US15030538
申请日:2014-08-25
申请人: ROBERT BOSCH GMBH
发明人: Heiko Ridderbusch
CPC分类号: H01S3/1698 , F02P23/04 , H01S3/0407 , H01S3/0612 , H01S3/0627 , H01S3/08 , H01S3/094 , H01S3/094084 , H01S3/09415 , H01S3/11 , H01S3/113 , H01S3/1618 , H01S3/164 , H01S3/1643 , H01S3/1696 , H01S5/183
摘要: A laser ignition system, in particular for an internal combustion engine, including a vertical emitter and a laser-active crystal, the laser-active crystal being doped in at least some areas using ytterbium, the ytterbium-doped area having a length of 200 μm to 7000 μm. The monolithic laser is based on a YAG or LuAG host crystal having 3 differently doped areas: a laser-active ytterbium-doped area, an undoped area which determines the resonator length and therefore the pulse duration, and a chromium-doped or vanadium-doped area for the passive Q-switch. The resonator is delimited by 2 mirrors.
摘要翻译: 一种激光点火系统,特别是用于包括垂直发射器和激光 - 活性晶体的内燃机的激光点火系统,使用镱在至少一些区域掺杂激光活性晶体,掺杂镱的区域具有200μm的长度 至7000μm。 单片激光器基于具有3个不同掺杂区域的YAG或LuAG主机晶体:激光有源镱掺杂区域,确定谐振器长度并因此确定脉冲持续时间的未掺杂区域,以及掺杂铬或钒的掺杂 无源Q开关区域。 谐振器由2个镜子界定。
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公开(公告)号:US20220032403A1
公开(公告)日:2022-02-03
申请号:US17385475
申请日:2021-07-26
申请人: Robert Bosch GmbH
发明人: Alexander Kroschel , Alexander Ilin , Andreas Michalowski , Heiko Ridderbusch , Julia Vinogradska , Petru Tighineanu , Anna Eivazi
IPC分类号: B23K26/40 , B23K26/382 , G06N20/00 , G06F17/18
摘要: A computer-implemented method for operating a laser material processing machine. Process parameters are varied with the aid of Bayesian optimization until a result of the laser material processing is sufficiently good. The Bayesian optimization taking place with the aid of a data-based process model, and it being taken into consideration during the variation of the process parameters how probable it is that a variable which characterizes a quality of the result is within predefinable boundaries.
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