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公开(公告)号:US20220294219A1
公开(公告)日:2022-09-15
申请号:US17750883
申请日:2022-05-23
Applicant: LANCIUM LLC
Inventor: Michael T. MCNAMARA , David J. HENSON , Raymond E. CLINE, JR.
IPC: H02J3/12 , G06F9/48 , G06F1/3206 , G06F9/50 , G06F1/329
Abstract: Systems include one or more critical datacenter connected to behind-the-meter flexible datacenters. The critical datacenter is powered by grid power and not necessarily collocated with the flexible datacenters, which are powered “behind the meter.” When a computational operation to be performed at the critical datacenter is identified and determined that it can be performed more efficiently or advantageously at a flexible datacenter, the computational operation is instead obtained by the flexible datacenters for performance The critical datacenter and flexible datacenters preferably share a dedicated communication pathway to enable high-bandwidth, low-latency, secure data transmissions. A queue system may be used to organize computational operations waiting for distribution to either the critical datacenter or the flexible datacenter.
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公开(公告)号:US20220171449A1
公开(公告)日:2022-06-02
申请号:US17673318
申请日:2022-02-16
Applicant: LANCIUM LLC
Inventor: Michael T. MCNAMARA , David J. HENSON , Raymond E. CLINE, JR.
Abstract: Systems include one or more critical datacenter connected to behind-the-meter flexible datacenters. The critical datacenter is powered by grid power and not necessarily collocated with the flexible datacenters, which are powered “behind the meter.” When a computational operation to be performed at the critical datacenter is identified and determined that it can be performed more efficiently or advantageously at a flexible datacenter, the computational operation is instead obtained by the flexible datacenters for performance. The critical datacenter and flexible datacenters preferably share a dedicated communication pathway to enable high-bandwidth, low-latency, secure data transmissions. In some situations, a computational operation is supported by multiple datacenters in a redundant arrangement, such as multiple flexible datacenters.
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公开(公告)号:US20250147534A1
公开(公告)日:2025-05-08
申请号:US19016279
申请日:2025-01-10
Applicant: LANCIUM LLC
Inventor: Michael T. MCNAMARA , David J. HENSON , Raymond E. CLINE, JR.
Abstract: Example embodiments for providing computation resource availability based on power-generation signals are presented herein. An embodiment may involve receive information indicative of power-generation economic signals at a first control system and identifying at least one of: (i) a change in a power-generation economic signal that exceeds a predefined threshold change, (ii) a power-generation economic signal that is below a predefined lower threshold limit, or (iii) a power-generation economic signal that is above a predefined upper threshold limit. Responsive to the identification, the embodiment involves performing at least one of: (i) adjusting a rate of power use by a flexible datacenter, and (ii) providing an indication of computation resource availability to a second control system. The flexible datacenter may include a behind-the-meter power input system, a power distribution system, and computing systems configured to receive power from the behind-the-meter power input system via the power distribution system.
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公开(公告)号:US20240411594A1
公开(公告)日:2024-12-12
申请号:US18805830
申请日:2024-08-15
Applicant: LANCIUM LLC
Inventor: Andrew GRIMSHAW , Vanamala VENKATASWAMY , Raymond E. CLINE, JR. , Michael T. MCNAMARA
IPC: G06F9/48 , G06Q10/0631 , G06Q50/06
Abstract: A method includes, by a scheduling controller, receiving from a user a request for an application to be executed by a computing system associated with a data center, wherein the application includes a plurality of tasks, and wherein the request includes an estimated execution time corresponding to an estimated amount of real-world time that the tasks will be actively running on the computing system to fully execute the application. The method includes receiving from the user a service level objective indicating a target percentage of a total amount of real-world time that the tasks will be actively running on the computing system and generating, in response to determining that the job can be completed according to the service level objective and the estimated execution time, a notification indicating acceptance of the job.
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公开(公告)号:US20230284570A1
公开(公告)日:2023-09-14
申请号:US18143277
申请日:2023-05-04
Applicant: LANCIUM LLC
Inventor: David HENSON , Michael T. MCNAMARA , Raymond E. CLINE, JR.
IPC: A01G9/24 , G05B19/042 , H02S40/32 , A01G9/18 , A01G9/26 , H02J3/38 , H02J13/00 , G06F1/3203 , G06F9/48
CPC classification number: A01G9/243 , G05B19/042 , H02S40/32 , A01G9/249 , A01G9/18 , A01G9/246 , A01G9/247 , A01G9/26 , H02J3/381 , H02J13/00 , H02J13/00002 , G06F1/3203 , G06F9/4856 , H02J13/00007 , H02J3/38 , A01G9/24 , G05B2219/2639 , H02J2300/28 , H02J2300/24 , H02J2300/20
Abstract: A flexible growcenter includes a mobile container, a behind-the-meter power input system, a power distribution system, a growcenter control system, a climate control system, a lighting system, and an irrigation system. The growcenter control system modulates power delivery to one or more components of the climate control system, the lighting system, and the irrigation system based on unutilized behind-the-meter power availability or an operational directive. A method of dynamic power delivery to a flexible growcenter using unutilized behind-the-meter power includes monitoring unutilized behind-the-meter power availability, determining when a growcenter ramp-up condition is met, and enabling behind-the-meter power delivery to one or more computing systems when the growcenter ramp-up condition is met.
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公开(公告)号:US20230281732A1
公开(公告)日:2023-09-07
申请号:US18139010
申请日:2023-04-25
Applicant: LANCIUM LLC
Inventor: Michael T. MCNAMARA , Raymond E. CLINE, JR.
IPC: G06Q50/06 , H02J13/00 , G05B13/04 , G05B23/02 , G06F1/3287 , G06Q10/0631
CPC classification number: G06Q50/06 , H02J13/00006 , H02J13/00002 , G05B13/042 , G05B23/0294 , G06F1/3287 , G06Q10/06315
Abstract: Examples relate to a method includes monitoring a set of parameters. The set of parameters are associated with a first set of computing components and a second set of computing components. The first set of computing components is located in a first region and the second set of computing components is located in a second region. The first region is positioned proximate a generation station control system associated with a generation station and the second region is positioned remotely from the generation station control system. Each computing system of the second set of computing systems is configured to adjust power consumption during operation. The method also includes adjusting power consumption at one or more computing components of the second set of computing components based on the set of parameters.
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公开(公告)号:US20230178995A1
公开(公告)日:2023-06-08
申请号:US18106093
申请日:2023-02-06
Applicant: LANCIUM LLC
Inventor: Michael T. MCNAMARA , David J. HENSON , Raymond E. CLINE, JR.
CPC classification number: H02J3/388 , G05B13/041 , G06F1/28 , H02J3/00 , H02J3/003 , H02J3/06 , H02J3/38 , H02J13/00016 , H02J13/00034 , H02J3/144 , H02J3/001 , H02J2203/10
Abstract: Systems include one or more critical datacenter connected to behind-the-meter flexible datacenters. The critical datacenter is powered by grid power and not necessarily collocated with the flexboxes, which are powered “behind the meter.” When a computational operation to be performed at the critical datacenter is identified and determined that it can be performed at a lower cost at a flexible datacenter, the computational operation is instead routed to the flexible datacenters for performance The critical datacenter and flexible datacenters preferably shared a dedicated communication pathway to enable high-bandwidth, low-latency, secure data transmissions.
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公开(公告)号:US20210325955A1
公开(公告)日:2021-10-21
申请号:US17328275
申请日:2021-05-24
Applicant: LANCIUM LLC
Inventor: Michael T. MCNAMARA , David J. HENSON , Raymond E. CLINE, JR.
IPC: G06F1/3234 , G06F1/329 , G06F1/3296 , G06F1/324 , G06F1/3287
Abstract: In an example embodiment, a distributed power control system can include a datacenter and a remote master control system. The datacenter can include (i) computing systems, (ii) a behind-the-meter power input system configured to receive power from a behind-the-meter power source and deliver power to the computing systems, and (iii) a datacenter control system configured to control the computing systems and the behind-the-meter power input system. The remote master control system can be configured to issue instructions to the datacenter that affect an amount of behind-the-meter power consumed by the datacenter. The datacenter control system can receive, from a local station control system configured to at least partially control the behind-the-meter power source, a directive for the datacenter to ramp-down power consumption, and in response to receiving the directive, cause the computing systems to perform a set of predetermined operations correlated with the directive.
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公开(公告)号:US20210296928A1
公开(公告)日:2021-09-23
申请号:US17340643
申请日:2021-06-07
Applicant: LANCIUM LLC
Inventor: Michael T. MCNAMARA , David J. HENSON , Raymond E. CLINE, JR.
Abstract: A system includes a flexible datacenter and a power generation unit that generates power on an intermittent basis. The flexible datacenter is coupled to both the power generation unit and grid power through a local station. By various methods, a control system may detect a transition of the power generation unit into a stand-down mode and selectively direct grid power delivery to always-on systems in the flexible datacenter.
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公开(公告)号:US20210101499A1
公开(公告)日:2021-04-08
申请号:US17101784
申请日:2020-11-23
Applicant: LANCIUM LLC
Inventor: Michael T. MCNAMARA , Raymond E. CLINE, JR.
Abstract: Examples relate to flexible datacenters or other power loads tolerant of intermittent operation and configured to use power received behind-the-meter. A system may include a transportation hub electrically coupled to a BTM power source via a branch line. The transportation hub may receive behind-the-meter (“BTM”) power from the BTM power source. The system may also include a datacenter control system configured to modulate power delivery to the transportation hub based on a set of monitored conditions. The set of monitored conditions may include BTM power availability at the transportation hub. In some examples, the datacenter control system is a remote master control system positioned remotely from the transportation hub.
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