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公开(公告)号:KR1020100046276A
公开(公告)日:2010-05-06
申请号:KR1020107006801
申请日:2008-08-28
申请人: 콘서트 아이엔씨.
发明人: 포브스,조셉,더블유.,주니어.
IPC分类号: G06Q50/06
CPC分类号: G06Q10/00 , G01D4/004 , G06Q10/06 , G06Q10/06315 , G06Q10/06375 , G06Q30/02 , G06Q30/0205 , G06Q30/0277 , H02J3/14 , H02J13/0013 , Y02B70/3225 , Y02B90/242 , Y02B90/245 , Y02B90/248 , Y02P90/82 , Y02P90/84 , Y02P90/845 , Y04S10/54 , Y04S20/222 , Y04S20/322 , Y04S20/40 , Y04S20/52 , Y04S50/14
摘要: A method and apparatus for virtually generating electricity for use by electric utilities provide a virtual electric utility. In one embodiment, a non-power generating electric utility enters into a supply agreement to acquire electric power from an electric power generating entity. During a term of the agreement, the non-power generating utility intentionally refrains from receiving at least some of the electric power to which it is entitled under the agreement to produce deferred electric power. The non-power generating utility offers to supply the deferred electric power to third party, such as an electric power supplier or an electric power consumer. The power deferment is preferably achieved through issuance of power control commands to a load management system. In another embodiment, an independent third party controls the load management system to function as an alternative energy supplier by virtually supplying deferred electric power back to a power grid.
摘要翻译: 用于虚拟发电的方法和装置用于电力公用事业,提供了虚拟电力公用事业。 在一个实施例中,非发电电力公司进入供电协议以从发电实体获取电力。 在协议期间,非发电公用事业单位有意地不接受根据协议授权的至少一些电力产生延期电力。 非发电公用设施向第三方(例如电力供应商或电力消费者)提供延迟电力。 功率延迟优选通过向负载管理系统发布功率控制命令来实现。 在另一个实施例中,独立的第三方控制负载管理系统作为替代能源供应商,通过将延迟电力虚拟地提供给电力网来实现。
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公开(公告)号:KR1020100028460A
公开(公告)日:2010-03-12
申请号:KR1020080131009
申请日:2008-12-22
申请人: 이시우
发明人: 이시우
CPC分类号: Y02E10/10 , G06Q10/0631 , Y04S10/54
摘要: PURPOSE: A system and a method of geothermal power generation utilizing off-peak power are provided to pump an EGS using the chip off-peak power and obtain heated geothermal water at the peak or intermediate load. CONSTITUTION: A method of geothermal power generation utilizing off-peak power comprises the steps of: injecting geothermal water of a water tank into an EGS(Enhanced Geothermal System) for a predetermined time, letting the geothermal water and supplementary water absorb the subterranean heat from a deep lock layer for a predetermined time, and outputting the heated geothermal water from the EGS at the peak or intermediate load for a predetermined time.
摘要翻译: 目的:提供采用非峰值功率的地热发电系统和方法,以使用峰值功率泵送EGS,并获得峰值或中间负载下的加热地热水。 构成:利用非峰值功率的地热发电方法包括以下步骤:将水箱的地热水注入EGS(增强地热系统)预定时间,使地热水和补充水从地下热吸收地下热 深度锁定层达预定时间,并且在峰值或中间载荷下从EGS输出加热的地热水预定时间。
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公开(公告)号:KR1020090102750A
公开(公告)日:2009-09-30
申请号:KR1020097011965
申请日:2007-09-12
申请人: 인터내셔널 비지네스 머신즈 코포레이션
发明人: 피체띠,루이기 , 섹치,마르코 , 세코만디,안토니오 , 도나텔리,알레싼드로
CPC分类号: H02J3/14 , H02J13/0017 , H02J2003/003 , Y02B70/3225 , Y02B70/3266 , Y02B90/2607 , Y04S10/54 , Y04S20/222 , Y04S20/242 , Y04S40/12
摘要: A solution is proposed for an integrated system which tries to prevent and manage power break down in home electrical system with an interaction between the appliances or the electricity points within the house and a server controlling the system. A server (105) is connected to the meter (201) and to a plurality of agents (110). In a state of the art home electrical system the device (105) provides a new functionality which can range from a mere alerting service to a proper control and management of the electricity consumption within the house. Server (105) could be located anywhere between the main meter/switch, normally provided by the electrical distribution company, and the household appliances or, more in general, the electrical devices to be managed. Its preferred location is however inside the apartment itself, near the remainder of the main internal switches. Connected to the Server (105) there are several clients which are associated to one or more switches or plugs.
摘要翻译: 提出了一种集成系统的解决方案,其试图通过家用电器或房屋内的电点与控制系统的服务器之间的相互作用来防止和管理家用电气系统中的电力故障。 服务器(105)连接到仪表(201)和多个代理(110)。 在最先进的家庭电气系统中,设备(105)提供了新的功能,其可以从仅仅是警报服务到适当地控制和管理房屋内的电力消耗。 服务器(105)可以位于通常由配电公司提供的主仪表/开关与家用电器之间的任何地方,或者更一般地,将被管理的电气设备。 然而,它的首选位置在公寓本身内,靠近主要内部开关的其余部分。 连接到服务器(105)有几个客户端与一个或多个交换机或插头相关联。
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公开(公告)号:KR100569425B1
公开(公告)日:2006-04-07
申请号:KR1020040016503
申请日:2004-03-11
申请人: 세이코 엡슨 가부시키가이샤
IPC分类号: G06Q50/06
CPC分类号: H02J3/00 , H02J2003/003 , Y02P90/845 , Y04S10/54
摘要: To provide an energy evaluation support system and the like which can more efficiently and precisely compute electric power consumption for each of predetermined processing units such as production steps and the like, the energy evaluation support system includes a receiving section which receives a factory design request including a production condition instruction indicating a production condition from the user, a storage section which stores a production device database containing data relating to production devices and a requisite-power supply device database containing data relating to requisite-power supply devices, a processing section which computes energy consumption for each of the production devices and the requisite-power supply devices and for each requisite power type, based on the production device database and requisite-power supply device database according to the factory design request from the user, and an output section which presents the energy consumption computed by the processing section to the user in a predetermined form.
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公开(公告)号:KR1020040081349A
公开(公告)日:2004-09-21
申请号:KR1020040016503
申请日:2004-03-11
申请人: 세이코 엡슨 가부시키가이샤
IPC分类号: G06Q50/06
CPC分类号: H02J3/00 , H02J2003/003 , Y02P90/845 , Y04S10/54
摘要: PURPOSE: A system and a method for supporting energy estimation of each process unit, and an information storing medium are provided to calculate energy consumption efficiently and correctly depending on changes of utilities supply due to increase/decrease of manufacturing devices by converting energy consumption of a utilities supplying device into an energy consumption coefficient. CONSTITUTION: An input part(20) receives input information such as design requirements of a factory from a user. A storing part(40) stores various databases. A processing part(10) calculates a total power consumption depending on the design requirements. An output part(30) suggests the total power consumption to the user. The processing part comprises an information generator(11) generating image information for outputting to the output part, a judger(12) judging contents of the input information from the input part, and an updater(13) updating the data of the storing part.
摘要翻译: 目的:提供一种用于支持每个处理单元的能量估计的系统和方法,以及信息存储介质,用于根据制造装置的增减来有效地正确地计算能量消耗。 公用事业供应设备达到能耗系数。 构成:输入部件(20)从用户接收诸如工厂的设计要求等输入信息。 存储部(40)存储各种数据库。 处理部(10)根据设计要求计算总功耗。 输出部分(30)建议用户的总功耗。 所述处理部包括生成用于向所述输出部输出图像信息的信息生成部(11),从所述输入部判定所述输入信息的内容的判断部(12)以及更新所述存储部的数据的更新部(13)。
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公开(公告)号:KR1020030003233A
公开(公告)日:2003-01-09
申请号:KR1020027011434
申请日:2001-03-07
申请人: 가부시키가이샤마크테크
IPC分类号: G06Q50/06
CPC分类号: H02J3/00 , H02J2003/003 , Y04S10/54
摘要: 샘플데이터 축적부(2)에 축적된 전력부하의 사용전력량의 샘플데이터에 기초하여 부하패턴인식부(3)에서 승리율이 산출됨과 동시에, 조정전력량연산부(5) 및 목표계수연산부(7)에서 조정전력량과 목표계수가 산출된다. 또 수요시한목표치 연산부(8)는 승리율, 조정전력량, 목표계수에 기초하여 수요시한마다 전력부하에서 사용될 전력량의 목표치를 산출한다. 그리고 이 목표치에 기초하여 수요제어부(9) 및 부하제어부(10)에 의해 전력부하의 사용전력량이 제어된다.
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公开(公告)号:KR101800909B1
公开(公告)日:2017-11-23
申请号:KR1020127024278
申请日:2010-09-22
申请人: 유니버시티 오브 델라웨어
发明人: 캠프턴윌릿
CPC分类号: G06Q30/0601 , B60L11/1816 , B60L11/1824 , B60L11/184 , B60L11/1842 , B60L11/1844 , B60L11/1846 , B60L11/1848 , B60L2240/72 , B60L2260/56 , B60L2270/32 , G06Q20/085 , G06Q20/22 , G06Q50/06 , H02J3/008 , H02J3/32 , H02J3/38 , Y02E60/721 , Y02T10/7005 , Y02T10/7072 , Y02T10/7088 , Y02T10/7291 , Y02T90/121 , Y02T90/128 , Y02T90/14 , Y02T90/16 , Y02T90/163 , Y02T90/169 , Y04S10/126 , Y04S10/54 , Y04S30/14 , Y04S50/10 , Y10S903/93
摘要: 전기그리드와전기차량사이의전력플로우를수집하는방법, 시스템및 장치가공개된다. 전력플로우를수집하는장치는메모리, 및메모리에연결되어복수의전기차량장치(EVE)로부터 EVE 속성을수신하고 EVE 속성에기초하여전체이용가능용량을예측하고전체이용가능용량의적어도일부를그리드에급송하는프로세서를포함한다. 전력플로우는각 EVE로부터 EVE 조작파라미터를수신하고, 수신된 EVE 조작파라미터를수집하고, 수집된 EVE 조작파라미터에기초하여전체이용가능용량을예측하고, 전체이용가능용량의적어도일부를그리드에급송함으로써수집될수 있다.
摘要翻译: 公开了一种用于收集电网和电动车辆之间的电力流动的方法,系统和设备。 装置用于收集功率流存储器,以及被连接到所述存储器以接收EVE从所述多个电动车辆单元(EVE)和至少一部分预测基于EVE特性总的可用容量的网格的属性,并允许充分利用的能力的 和一个喂食处理器。 通过从每个EVE的接收EVE运行参数的功率流,并且基于收集的接收EVE操作参数,收集EVE操作参数预测总的可用容量,并且将至少电网的总可用容量的一部分 可以收集。
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公开(公告)号:KR101797632B1
公开(公告)日:2017-11-15
申请号:KR1020147003031
申请日:2011-09-13
申请人: 닛폰 후료쿠카이하츠 가부시키가이샤
发明人: 반도마쓰오
CPC分类号: H02J7/0068 , H02J3/382 , H02J2003/003 , Y04S10/54 , Y10T307/527
摘要: 계획발전량과수요예측전력량과의차분전력을구하는차분전력연산부(13)와, 차분전력과축전지(105)의단위시간당충전가능전력또는방전가능전력을소정시간마다비교하여축전지(105)의충방전및 가피크컷량의증감을시뮬레이션함으로써, 소정시간마다피크컷량을구하는피크컷량연산부(14)를구비함으로써, 축전지(105)의충전가능전력또는방전가능전력을최대한으로이용한피크컷량을구할수 있도록한다.
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公开(公告)号:KR101777967B1
公开(公告)日:2017-09-12
申请号:KR1020160076035
申请日:2016-06-17
申请人: 한국수력원자력 주식회사
CPC分类号: Y04S10/54 , G06Q50/06 , G06Q10/0635 , G06Q10/0637 , G21C17/00
摘要: 복수의원자력발전소에위치하는복수의용접부들이각각고유한관리번호를가지도록하는원자력발전소용접부생애주기관리방법이제공된다. 상기방법은, 복수의원자력발전소들중 어느하나의원자력발전소에서지정된용접부관리번호인발전소별용접부관리번호를수신하는단계와, 상기발전소별용접부관리번호가, 상기발전소별용접부관리번호에대응되는용접부가위치하는원자력발전소에관한정보를포함하는지여부를결정하는단계, 그리고상기발전소별용접부관리번호가상기원자력발전소에관한정보를포함하지않는다는결정에응답하여상기발전소별용접부관리번호에원자력발전소에관한정보를부가함으로써통합용접부관리번호를생성하는단계를포함할수 있다. 따라서, 복수의원자력발전소에위치하는복수의용접부들각각에대한생애주기를관리할수 있고, 용접부와관련된모든정보를체계적으로조회및 분석할수 있게되어, 원자력발전소의유효성에대한대국민신뢰도향상을기대할수 있다.
摘要翻译: 提供了一种核电站焊接部分的生命周期管理方法,其中位于多个核电站中的多个焊缝各自具有唯一的管理编号。 该方法包括以下步骤:在多个核电站的核电站处接收作为指定的焊接控制编号的每个工厂的焊接控制编号; 判断是否包括在响应于所述决定,不包括在核电厂中的信息有关的核电厂剪刀值的信息,和所述特定工厂焊接控制号码在控制数上核电站工厂特定焊缝 并通过添加信息生成一个集成的焊接管理编号。 因此,它能够管理每个多个位于不同的核电厂焊缝的生命周期,这是可能的,你可以查询和分析相关的焊接系统有望提高核电厂的效益一般公众信心的全部信息 有。
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公开(公告)号:KR1020170099790A
公开(公告)日:2017-09-01
申请号:KR1020170024554
申请日:2017-02-24
申请人: 제네럴 일렉트릭 컴퍼니
发明人: 켐프주니어프리스톤버틀러
摘要: 전체발전유닛내에있는복수의유닛각각에대해권장된유지보수간격을결정하는방법은, 전체발전유닛내에있는복수의유닛(208, 211)에대한동작및 계획되지않은유지보수데이터를나타내는경험적데이터를수집하는단계(101); 동작및 계획되지않은유지보수데이터의경험적데이터를평가하는단계(101); 경험적데이터에기초하여복수의고장모드모델을생성하는단계(101); 복수의고장모드모델을결합하는단계(102); 복수의고장모드모델의결합을위한타겟동작메트릭을설정하는단계(103, 104); 타겟동작메트릭에기초하여전체발전유닛에대해전체권장된유지보수간격을생성하는단계(202, 302); 전체발전유닛내에있는상기복수의유닛각각에대해동작프로파일을계산하는단계(208); 및각각의유닛의동작프로파일에기초하여전체발전유닛내에있는복수의유닛각각에대해권장된유지보수간격을계산하는단계(108, 109, 210)를포함한다.
摘要翻译: 一种用于确定整个发电单元中的多个单元中的每一个单元的推荐维护间隔的方法包括以下步骤:操作表示多个单元(208,211)的操作和非计划维护数据的经验数据, 收集(101); 评估(101)操作和计划外维护数据的经验数据; 基于经验数据生成(101)多个故障模式模型; 组合(102)多个故障模式模型; 设置(103,104)用于组合多个故障模式模型的目标操作度量; 基于目标操作度量生成(202,302)针对整个发电单元的总推荐维护间隔; 计算(208)整个发电单元中的多个单元中的每个单元的操作概况; 并且基于每个单元的操作概况来计算(108,109,210)针对整个发电单元中的多个单元中的每一个的推荐维护间隔。
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