IPC분류정보
국가/구분 |
United States(US) Patent
등록
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국제특허분류(IPC7판) |
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출원번호 |
US-0537043
(2009-08-06)
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등록번호 |
US-8346398
(2013-01-01)
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발명자
/ 주소 |
- Ahmed, Osman
- Pienta, William Thomas
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출원인 / 주소 |
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인용정보 |
피인용 횟수 :
31 인용 특허 :
4 |
초록
▼
The various embodiments described herein relate to systems and methods, circuits and devices for providing data center cooling while optimizing power usage effectiveness and/or compute power efficiency of the data center. The various embodiments can provide optimized thermal performance and can redu
The various embodiments described herein relate to systems and methods, circuits and devices for providing data center cooling while optimizing power usage effectiveness and/or compute power efficiency of the data center. The various embodiments can provide optimized thermal performance and can reduce power consumption of the data center by strategically locating sensor modules, preferably microsystems with MEMS technology, in the data center and using a processing circuit to acquire data from the sensors and to generate a control law for operating the air conditioning system efficiently. In particular the sensors are operable to measure and provide granular environmental data to further characterize the environmental conditions of the racks locally, and the data center as a whole. The processing circuit may also generate a profile of local racks and simulate a data center environment to develop and test control strategies for implementation in the actual data center.
대표청구항
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1. An arrangement for optimizing power efficiency of a data center having a plurality of racks having at least one server computer, comprising: a plurality of sensors coupled to one or more of the plurality of racks and operable to measure at least one environmental parameter of said rack, each of t
1. An arrangement for optimizing power efficiency of a data center having a plurality of racks having at least one server computer, comprising: a plurality of sensors coupled to one or more of the plurality of racks and operable to measure at least one environmental parameter of said rack, each of the sensors configured to wirelessly transmit a measured environmental parameter; anda processing circuit configured to receive information based on the at least one measured environmental parameter, wherein the processing circuit further comprises a virtual data center representative of said data center, wherein the virtual data center is configured to: acquire the at least one environmental parameter;generate a simulated control law for operating said air conditioning system based on the at least one environmental parameter;validate the simulated control law before implementation in said air conditioning system; andwherein the processing circuit is further configured to: generate a profile indicative of the at least one environmental parameter corresponding to said rack; andgenerate a control law configured to operate one or more air conditioning systems in order to satisfy a thermal demand of the data center in an optimally power efficient manner based at least in part on information representative of the profile of said rack. 2. The arrangement of claim 1, wherein each of the sensors further comprises a micro-electro-mechanical systems (MEMS) sensor. 3. The arrangement of claim 1, wherein the at least one environmental parameter comprises at least one of temperature, relative humidity, pressure, and air flow. 4. The arrangement of claim 1, further comprising a memory operably connected to the processing circuit, the memory configured to store power efficiency characteristic information for said air conditioning unit. 5. The arrangement of claim 4, wherein the generated control law is based on at least one of the profile of said rack and the power efficiency characteristic information of said air conditioning unit. 6. The arrangement of claim 5, wherein the processing circuit is further configured to calculate total power consumption of said air conditioning system. 7. The arrangement of claim 1, wherein the virtual data center comprises an expert control system configured to optimize total power consumption of said air conditioning system for the generated profile of said rack. 8. The arrangement of claim 7, wherein the expert control system is selected from the group consisting of a fuzzy expert control system and a neural network. 9. The arrangement of claim 8, further comprising a memory operably connected to the processing circuit and configured to archive the optimized total power consumption of said air conditioning system for the generated profile of said rack. 10. A method for optimizing power efficiency of a data center having a plurality of racks having at least one server computer, comprising: receiving at least one measured environmental parameter of one or more racks;acquiring, by a virtual data center representative of the data center, the at least one measured environmental parameter;generating, by the virtual data center, a simulated control law for operating an air conditioning system based on the acquired measured environmental parameter; andvalidating the simulated control law before implementation in said air conditioning system;generating a profile indicative of the at least one measured environmental parameter of said rack;generating a control law operable to satisfy a thermal demand of the data center in an optimally power efficient manner based at least in part on information representative of the profile of said rack; andimplementing the control law to operate one or more air conditioning systems. 11. The method of claim 10, wherein each of the sensors further comprises a micro-electro-mechanical systems (MEMS) sensor coupled to the racks and configured to wirelessly transmit a measured environmental parameter, the method further comprising wirelessly transmitting the at least one environmental parameter. 12. The method of claim 10, wherein the at least one measured environmental parameters comprises at least one of temperature, relative humidity, pressure, and air flow. 13. The method of claim 10, further comprising storing power efficiency characteristic information for said air conditioning system in a memory operably coupled to a processing circuit. 14. The method of claim 13, wherein the generated control law is based on at least one of the profile of said rack and the power efficiency characteristic information of said air conditioning system. 15. The method of claim 14, further comprising calculating total power consumption of said air conditioning system. 16. The method of claim 10, wherein the virtual data center comprises an expert control system, and wherein generating the simulated control law comprises generating, by the expert control system, the simulated control law. 17. The method of claim 16, wherein the expert control system is configured to optimize total power consumption of said air conditioning system for the generated profile of said rack. 18. The method of claim 16, wherein the expert control system is selected from the group consisting of a fuzzy expert control system and a neural network. 19. The method of claim 18, further comprising storing the optimized total power consumption of said air conditioning system for the generated profile of said rack in a memory operably coupled to a processing circuit. 20. An arrangement for optimizing power efficiency of a data center having a plurality of racks having at least one server computer, comprising: a plurality of sensors coupled to one or more racks and operable to measure at least one environmental parameter of said rack, each sensor configured to wirelessly transmit a measured environmental parameter; anda rack controller coupled to said rack and associated with one or more sensors, the rack controller comprising a processing circuit configured to receive information based on the at least one measured environmental parameter from the respective sensors,wherein the processing circuit comprises a virtual data center representative of said data center and configured to generate a simulated control law for operating said air conditioning system based on the at least one environmental parameter and validate the simulated control law before implementation in said air conditioning system; andwherein the processing circuit is further configured to generate a control law configured to operate one or more air conditioning systems in order to satisfy a local thermal demand of said rack in an optimally power efficient manner based at least in part on information representative of the at least one environmental parameter. 21. An arrangement for optimizing power efficiency of a data center having a plurality of racks having at least one server computer, comprising: a plurality of sensors coupled to one or more racks and operable to measure at least one environmental parameter of said rack, each sensor configured to wirelessly transmit a measured environmental parameter; anda processing circuit configured to receive information based on the at least one measured environmental parameter, wherein the processing circuit comprises a virtual data center representative of said data center and configured to generate a simulated control law for operating said air conditioning system based on the at least one environmental parameter and validate the simulated control law before implementation in said air conditioning system;wherein the processing circuit is further configured to: (1) generate a control law configured to operate a dedicated cooler configured to at least partially satisfy a local thermal demand of said rack, and (2) generate a control law configured to operate one or more air conditioning systems in order to satisfy an overall thermal load of the data center, the operation of the dedicated cooler and the one or more air conditioning systems being in an optimally power efficient manner based at least in part on information representative of the at least one environmental parameter.
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