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公开(公告)号:US20240023556A1
公开(公告)日:2024-01-25
申请号:US18031176
申请日:2021-10-11
Applicant: BASF SE , COLORADO STATE UNIVERSITY RESEARCH FOUNDATION
Inventor: Douglas Findley , Franck Dayan , Hudson Takano , Ingo Meiners , Philip Westra , Rex A. Liebl , Steven Joseph Bowe
Abstract: The present invention relates to specific herbicide combinations comprising (i) glufosinate/L-glufosinate and/or salts thereof and (ii) a mixture of (A) saflufenacil and (B) trifiudimoxazin in specific ratios, and to compositions comprising said herbicide combinations in these ratios. The present invention further relates to a method of producing said specific herbicide combinations and compositions comprising said specific herbicide combinations. The present invention also relates to the use of said specific herbicide combinations and compositions comprising said specific herbicide combinations in the field of agriculture, for controlling harmful plants or undesired plant growth, as well as to corresponding methods.
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公开(公告)号:US20230416332A1
公开(公告)日:2023-12-28
申请号:US18340344
申请日:2023-06-23
Inventor: Kevin J. Morey , June I. Medford
IPC: C07K14/705 , C12N15/62 , G01N33/50 , C12N9/12
CPC classification number: C07K14/705 , C12N15/62 , G01N33/5097 , C12N9/12 , C07K2319/035
Abstract: The present disclosure provides compositions and methods for sensing a target substance of interest in the environment and inducing gene expression in response thereto, useful for detection of biological and chemical agents and environmental pollutants.
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公开(公告)号:US20230392523A1
公开(公告)日:2023-12-07
申请号:US18034469
申请日:2021-10-29
Inventor: Todd M. Bandhauer , Daniel Herber , Braden Limb , Jason Quinn , Shane Garland , Ethan Markey , Roberto Vercellino
Abstract: A power plant system is disclosed. The power plant system includes a combustor configured, a turbine configured to generate electricity, a heat exchanger and a steam turbine, a carbon capture system configured to remove at least a portion of carbon-based gasses from the flue gas downstream from the heat recovery steam generator, and a thermal storage system including a hot storage unit configured to store thermal energy at a hot temperature, the hot temperature greater than ambient temperature. The power plant is configured to operate in at least a first mode for storing thermal energy in the thermal storage system and a second mode for releasing the stored thermal energy from the thermal storage system and during the second mode, heat stored in the hot storage unit is transferred to the carbon capture system.
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公开(公告)号:US20230349075A1
公开(公告)日:2023-11-02
申请号:US18140953
申请日:2023-04-28
Inventor: Yan Vivian LI , Jiayi WEN , Saloni PURANDARE
CPC classification number: D01F6/64 , D01F6/18 , D01F6/70 , D01F11/127 , D10B2403/033
Abstract: Embodiments of the present disclosure relate to a denticle array. The denticle array includes a substrate and a plurality of denticles coupled to the substrate. Each denticle of the plurality of denticles includes an upper portion and a lower portion. The upper portion includes an upper body. The lower portion includes a lower body. The upper body includes a first prong extending from a front end of the denticle to a rear end of the denticle, a second prong extending from the front end of the denticle to a rear end of the denticle, and a third prong extending from the front end of the denticle to a rear end of the denticle. A first ridge separates the first prong and second prong. A second ridge separates the first prong from the third prong. The first prong has a length greater than the second prong and the third prong.
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公开(公告)号:US11751057B2
公开(公告)日:2023-09-05
申请号:US17026123
申请日:2020-09-18
Inventor: Sudeep Pasricha , Saideep Tiku
IPC: H04W12/12 , H04W4/33 , H04W4/021 , H04B17/318 , G06N3/08 , G06N3/04 , G01S5/02 , H04W12/122
CPC classification number: H04W12/122 , G01S5/0252 , G06N3/04 , G06N3/08 , H04B17/318 , H04W4/021 , H04W4/33
Abstract: An exemplary radio fingerprint-based indoor localization method and system is disclosed that is resistant to spoofing or jamming attacks (e.g., at nearby radios, e.g., access points), among other types of interference. The exemplary method and system may be applied in the configuring of a secured convolutional neural network (S-CNNLOC) or secured deep neural network configured for attack-resistant fingerprint-based indoor localization.
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26.
公开(公告)号:US11717213B2
公开(公告)日:2023-08-08
申请号:US17039111
申请日:2020-09-30
Inventor: Christian M. Puttlitz , Kevin M. Labus
IPC: A61B5/00 , G01N3/06 , G01N3/20 , G01D5/20 , A61B5/05 , G01B7/16 , G01N27/90 , G01N33/483 , H01Q9/16 , G01N3/08 , G01B7/24
CPC classification number: A61B5/4504 , A61B5/0048 , A61B5/05 , G01B7/16 , G01B7/24 , G01D5/202 , G01D5/2013 , G01N3/066 , G01N3/08 , G01N3/20 , G01N27/9006 , G01N27/9046 , G01N33/4833 , H01Q9/16 , A61B2562/0252 , A61B2562/14 , G01N2203/0023 , G01N2203/0032 , G01N2203/0076
Abstract: A loading device, a monitoring system, and a method thereof can measure stiffness of a structural member (SM) and monitor progress or property thereof over time. The loading device includes two types of displacement sensors, one type being an antenna. As the SM, which is in a magnetic or electromagnetic field and electromagnetically coupled to the antenna without contact, undergoes displacement under known loads, characteristics of the electromagnetic field coupling between the antenna and the SM change over time due to the displacement of the SM. The shift in the characteristics of the electromagnetic field coupling between the antenna and the SM can be used to determine the displacement of the SM. Based on the changes in the displacement over time, diagnosis of the SM being monitored over an evaluation period can be made. The loading device includes at least one movable frame to apply a preload to the SM.
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27.
公开(公告)号:US20230216294A1
公开(公告)日:2023-07-06
申请号:US18009197
申请日:2021-04-09
Inventor: Siddharth SURYANARAYANAN , Tanveer HUSSAIN , S M Shafiul ALAM
CPC classification number: H02J3/00125 , H02J3/14 , H02J3/0012 , H02J3/381
Abstract: Disclosed herein are systems and methods to perform hybridized transmission switching of an electric power system to avoid exceeding line ratings and minimize load shedding.
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公开(公告)号:US11672771B2
公开(公告)日:2023-06-13
申请号:US16347005
申请日:2017-11-03
Inventor: Floyd Taub , Amanda Guth
IPC: A61K31/16 , A61P35/00 , A61K9/00 , A61K38/17 , A61K38/20 , A61K39/395 , C12Q1/6886
CPC classification number: A61K31/16 , A61K9/0019 , A61K38/177 , A61K38/2013 , A61K39/3955 , A61P35/00 , C12Q1/6886 , C12Q2600/106 , C12Q2600/158
Abstract: The present disclosure provides methods, kits, and compositions comprising β-alethine and one or more immune modulators and methods to determine when they are advantageous. Particular applications include the use of β-alethine and one or more immune modulators in the treatment of cancer.
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29.
公开(公告)号:US11650144B2
公开(公告)日:2023-05-16
申请号:US17173877
申请日:2021-02-11
Inventor: Su-Jung (Candace) Tsai , Doosan Back , David B. Janes
CPC classification number: G01N15/10 , G01N15/0606 , G01N15/0656 , G01N2015/0038 , G01N2015/0046 , G01N2015/1087 , G01N2015/1254
Abstract: Aspects of the present disclosure involve systems, methods, and the like, for a fabrication of a particulate matter (PM) sensor that utilizes a capacitance sensor to detect sub-micrometer and nanoparticles in the respirable range of an environment. In one implementation, the capacitance sensor may comprise interdigitated electrodes between which a capacitance may be measured. PM deposited on the sensor may cause the capacitance between the electrodes to be altered and such a change in capacitance may be measured by the PM sensor. This measurement of the change in capacitance of the interdigitated capacitance sensor may therefore be correlated to the presence of sub-micrometer and nanoparticles in an environment. In one particular implementation, the PM sensor may further include a micro-heater circuit, a readout circuit, and an interface connecting the readout circuit to the micro-heater/capacitance sensor of the PM sensor.
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公开(公告)号:US11645380B2
公开(公告)日:2023-05-09
申请号:US16434420
申请日:2019-06-07
Inventor: Sai Vineel Reddy Chittamuru , Sudeep Pasricha , Ishan Thakkar
CPC classification number: G06F21/44 , G06F15/7825 , H04L9/0866 , H04W4/06 , H04W12/069
Abstract: The exemplified methods and systems provide hardware-circuit-level encryption for inter-core communication of photonic communication devices such as photonic network-on-chip devices. In some embodiments, the hardware-circuit level encryption uses authentication signatures that are based on process variation that inherently occur during the fabrication of the photonic communication device. The hardware level encryption can facilitate high bandwidth on-chip data transfers while preventing hardware-based trojans embedded in components of the photonic communication device such as PNoC devices or preventing external snooping devices from snooping data from the neighboring photonic signal transmission medium in a shared photonic signal transmission medium. In some embodiments, the hardware-circuit-level encryption is used for unicast/multicast traffic.
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