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公开(公告)号:US20110218680A1
公开(公告)日:2011-09-08
申请号:US12929873
申请日:2011-02-22
申请人: Hyun Ki Kim , Jae Min Lim , Seong Uk Pyung , Sun Il Jin , Hyeng Kyun Kim , Jae Yu Seo , Seong Wook Jeong , Sung Ho Cho , Jung Won Park , Jang Beom Yang , Chang Ho Son , Young Jin Baek
发明人: Hyun Ki Kim , Jae Min Lim , Seong Uk Pyung , Sun Il Jin , Hyeng Kyun Kim , Jae Yu Seo , Seong Wook Jeong , Sung Ho Cho , Jung Won Park , Jang Beom Yang , Chang Ho Son , Young Jin Baek
摘要: A demand response (DR) system includes a DR control unit to generate different DR levels having different power rates for each power unit, and transmit a current DR level, and a household appliance to receive the DR level from the DR control unit, and differentially control energy output of a product in response to the received DR level so as to reduce power consumption of the product. As a result, the DR system reduces power consumption when power rates are high so as to reduce electricity bills.
摘要翻译: 需求响应(DR)系统包括:DR控制单元,用于为每个功率单元生成具有不同功率率的不同DR电平,并且传送当前的DR电平;以及家用电器,用于从DR控制单元接收DR电平; 响应于接收到的DR级别来控制产品的能量输出,以便降低产品的功耗。 因此,DR系统降低电力利用率时的功耗,从而降低电费。
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公开(公告)号:US08983672B2
公开(公告)日:2015-03-17
申请号:US12929873
申请日:2011-02-22
申请人: Hyun Ki Kim , Jae Min Lim , Seong Uk Pyung , Sun Il Jin , Hyeng Kyun Kim , Jae Yu Seo , Seong Wook Jeong , Sung Ho Cho , Jung Won Park , Jang Beom Yang , Chang Ho Son , Young Jin Baek
发明人: Hyun Ki Kim , Jae Min Lim , Seong Uk Pyung , Sun Il Jin , Hyeng Kyun Kim , Jae Yu Seo , Seong Wook Jeong , Sung Ho Cho , Jung Won Park , Jang Beom Yang , Chang Ho Son , Young Jin Baek
摘要: A demand response (DR) system includes a DR control unit to generate different DR levels having different power rates for each power unit, and transmit a current DR level, and a household appliance to receive the DR level from the DR control unit, and differentially control energy output of a product in response to the received DR level so as to reduce power consumption of the product. As a result, the DR system reduces power consumption when power rates are high so as to reduce electricity bills.
摘要翻译: 需求响应(DR)系统包括:DR控制单元,用于为每个功率单元生成具有不同功率率的不同DR电平,并且传送当前的DR电平;以及家用电器,用于从DR控制单元接收DR电平; 响应于接收到的DR级别来控制产品的能量输出,以便降低产品的功耗。 因此,DR系统降低电力利用率时的功耗,从而降低电费。
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公开(公告)号:US08930033B2
公开(公告)日:2015-01-06
申请号:US12929803
申请日:2011-02-16
申请人: Jang Beom Yang , Jung Won Park , Seong Wook Jeong , Chang Hern Lee , Seong Chan Gim , Young Ho Jang , Jae Min Lim , Sung Ho Cho , Sun Il Jin , Chang Ho Son , Young Jin Baek
发明人: Jang Beom Yang , Jung Won Park , Seong Wook Jeong , Chang Hern Lee , Seong Chan Gim , Young Ho Jang , Jae Min Lim , Sung Ho Cho , Sun Il Jin , Chang Ho Son , Young Jin Baek
CPC分类号: H02J3/14 , H02J2003/143 , Y02B70/3225 , Y02B70/3266 , Y04S20/222 , Y04S20/224 , Y04S20/242
摘要: A demand response (DR) system, computer-readable medium and method are disclosed. The DR system controls a high-power-consumption load to be pre-operated or post-operated in a low-power-rate interval instead of a high-power-rate interval, and reduces an amount of power consumption required for a high-power-rate interval, resulting in reduction of power rates. In addition, limitation to household appliance operation is minimized, to greatly reduce inconvenience of a user.
摘要翻译: 公开了一种需求响应(DR)系统,计算机可读介质和方法。 DR系统控制高功耗负载,以低功率速率间隔而不是高功率速率间隔进行预操作或后操作,并减少高功率负载所需的功耗, 功率率间隔,导致功率降低。 另外,对家用电器操作的限制被最小化,大大减少了用户的不便。
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公开(公告)号:US20110208369A1
公开(公告)日:2011-08-25
申请号:US12929803
申请日:2011-02-16
申请人: Jang Beom Yang , Jung Won Park , Seong Wook Jeong , Chang Hern Lee , Seong Chan Gim , Young Ho Jang , Jae Min Lim , Sung Ho Cho , Sun Il Jin , Chang Ho Son , Young Jin Baek
发明人: Jang Beom Yang , Jung Won Park , Seong Wook Jeong , Chang Hern Lee , Seong Chan Gim , Young Ho Jang , Jae Min Lim , Sung Ho Cho , Sun Il Jin , Chang Ho Son , Young Jin Baek
IPC分类号: G06F1/26
CPC分类号: H02J3/14 , H02J2003/143 , Y02B70/3225 , Y02B70/3266 , Y04S20/222 , Y04S20/224 , Y04S20/242
摘要: A demand response (DR) system, computer-readable medium and method are disclosed. The DR system controls a high-power-consumption load to be pre-operated or post-operated in a low-power-rate interval instead of a high-power-rate interval, and reduces an amount of power consumption required for a high-power-rate interval, resulting in reduction of power rates. In addition, limitation to household appliance operation is minimized, to greatly reduce inconvenience of a user.
摘要翻译: 公开了一种需求响应(DR)系统,计算机可读介质和方法。 DR系统控制高功耗负载,以低功率速率间隔而不是高功率速率间隔进行预操作或后操作,并减少高功率负载所需的功耗, 功率率间隔,导致功率降低。 另外,对家用电器操作的限制被最小化,大大减少了用户的不便。
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公开(公告)号:US20120102984A1
公开(公告)日:2012-05-03
申请号:US13317690
申请日:2011-10-26
申请人: Yong Han Kim , Kook Jeong Seo , Jung Won Park
发明人: Yong Han Kim , Kook Jeong Seo , Jung Won Park
IPC分类号: F25D21/00
CPC分类号: F25D17/042 , F25B2600/0251 , F25D17/065 , F25D2317/0411 , F25D2317/04111 , F25D2317/061 , F25D2400/02 , F25D2700/10 , F25D2700/122 , F25D2700/123 , F25D2700/14
摘要: A refrigerator and a dehumidification control method thereof to effectively perform both temperature compensation and dehumidification so as to prevent formation of dewdrops in a refrigerating compartment of the refrigerator. The control method includes detecting a temperature of outside air around the refrigerator to judge whether or not the detected temperature corresponds to a low-temperature mode requiring dehumidification, heating a refrigerating compartment by operating a refrigerating compartment heater and a refrigerating compartment fan for dehumidification if the low-temperature mode is judged, cooling the refrigerating compartment by operating a compressor while continuously operating the refrigerating compartment fan, and simultaneously cooling and heating the refrigerating compartment to enable simultaneous implementation of temperature compensation by heating of the refrigerating compartment and dehumidification by cooling of the refrigerating compartment.
摘要翻译: 一种冰箱及其除湿控制方法,其有效地进行温度补偿和除湿,以防止在冰箱的冷藏室内形成露珠。 控制方法包括检测冰箱周围的外部空气的温度,以判断检测到的温度是否对应于需要除湿的低温模式,通过操作冷藏室加热器来加热冷藏室,以及用于除湿的冷藏室风扇 判断低温模式,通过在连续操作冷藏室风扇的同时操作压缩机来冷却冷藏室,并且同时冷却和加热冷藏室,以通过冷却室的加热和通过冷却来同时实现温度补偿 冷藏室
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公开(公告)号:US20110168556A1
公开(公告)日:2011-07-14
申请号:US13119599
申请日:2009-09-30
申请人: Jin Su Park , Byung Young Yoon , Jung Won Park , Jung Hwan Cho , Sang Beom Kim
发明人: Jin Su Park , Byung Young Yoon , Jung Won Park , Jung Hwan Cho , Sang Beom Kim
IPC分类号: G01N27/407
CPC分类号: G01N27/417 , G01N27/4065 , G01N27/4074 , G01N33/0037 , Y02A50/245
摘要: The present invention provides a nitrogen-oxide gas sensor that is able to measure nitric oxide and nitrogen dioxide at the same time and ensure measurement accuracy and long stability. The present invention relates to the nitrogen-oxide gas sensor that includes: an oxide ion conductive solid electrolyte; a primary film made of a metal oxide which contacts the solid electrolyte; a secondary film made of a metal oxide that contacts with the solid electrolyte and is separated from the first film; a power source that applies electric power to the primary and secondary films by electrically connecting a primary node to the primary film and a secondary node to the secondary film; a tertiary film made of a metal oxide that contacts the solid electrolyte, wherein the tertiary film and the primary film are connected to the power source in parallel; and a measurement unit that measures the electric potential difference between the primary and secondary nodes.
摘要翻译: 本发明提供一种氮氧化物气体传感器,其能够同时测量一氧化氮和二氧化氮,并且确保测量精度和长的稳定性。 本发明涉及氮氧化物气体传感器,其包括:氧化物离子传导性固体电解质; 由与固体电解质接触的金属氧化物制成的主膜; 由与固体电解质接触并与第一膜分离的金属氧化物制成的二次膜; 电源,其通过将主节点与初级膜电连接到次级膜和次级节点而向初级膜和次级膜施加电力; 由接触固体电解质的金属氧化物制成的三次膜,其中所述三次膜和所述主膜并联连接到所述电源; 以及测量单元,其测量主节点和次节点之间的电位差。
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公开(公告)号:US08399883B2
公开(公告)日:2013-03-19
申请号:US13119584
申请日:2009-09-30
申请人: Jin Su Park , Byung Young Yoon , Jung Won Park , Jung Hwan Cho , Sang Beom Kim
发明人: Jin Su Park , Byung Young Yoon , Jung Won Park , Jung Hwan Cho , Sang Beom Kim
IPC分类号: G01N27/406
CPC分类号: G01N27/4074 , G01N27/4065
摘要: The present invention provides a nitrogen-oxide gas sensor that is able to measure nitric oxide and nitrogen dioxide at the same time and ensure measurement accuracy and long stability. For these purposes, the nitrogen-oxide gas sensor includes: an oxide ion conductive solid electrolyte; a primary film that contacts the solid electrolyte and is made of a p-type semi-conductor metal oxide; a secondary film that contacts the solid electrolyte and is made of a p-type semiconductor metal oxide; an n-type semiconductor metal oxide that is included in at least one of the primary and secondary films; a power source that applies electric power to the primary and secondary films by electrically connecting a primary node to the primary film and a secondary node to the secondary film; and a measurement unit that measures the electric potential difference between the primary and secondary nodes.
摘要翻译: 本发明提供一种氮氧化物气体传感器,其能够同时测量一氧化氮和二氧化氮,并且确保测量精度和长的稳定性。 为了这些目的,氮氧化物气体传感器包括:氧化物离子导电固体电解质; 与固体电解质接触并由p型半导体金属氧化物制成的初级膜; 与固体电解质接触并由p型半导体金属氧化物制成的二次膜; 包含在初级膜和次级膜中的至少一种中的n型半导体金属氧化物; 电源,其通过将主节点与初级膜电连接到次级膜和次级节点而向初级膜和次级膜施加电力; 以及测量单元,其测量主节点和次节点之间的电位差。
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公开(公告)号:US20110168557A1
公开(公告)日:2011-07-14
申请号:US13119612
申请日:2009-09-30
申请人: Jin Su Park , Byung Young Yoon , Jung Won Park , Jung Hwan Cho , Sang Beom Kim
发明人: Jin Su Park , Byung Young Yoon , Jung Won Park , Jung Hwan Cho , Sang Beom Kim
IPC分类号: G01N27/407
CPC分类号: G01N27/4074 , G01N27/4065 , G01N27/417
摘要: A nitrogen-oxide gas sensor that is able to measure a nitric oxide and a nitrogen dioxide at the same time, and ensure sensing accuracy and stability over a long period of time.The nitrogen-oxide gas sensor includes: a first oxygen ion conductive solid electrolyte; a first film contacting the first oxygen ion conductive solid electrolyte and formed of a metal oxide; a second film contacting the first oxygen ion conductive solid electrolyte and formed of a metal oxide; a power supply source for applying a current to the first and second films by electrically connecting a first node to the first film and a second node to the second film; a measurement unit for measuring an electric potential difference between the first and second nodes; and a temperature adjustment unit for uniformly maintaining a temperature of at least one of the first and second films.
摘要翻译: 一种氮氧化物气体传感器,能够同时测量一氧化氮和二氧化氮,并确保长时间的传感精度和稳定性。 氮氧化物气体传感器包括:第一氧离子导电固体电解质; 第一膜与第一氧离子导电固体电解质接触并由金属氧化物形成; 接触第一氧离子导电固体电解质并由金属氧化物形成的第二膜; 电源,用于通过将第一节点电连接到所述第一膜和将所述第二节点电连接到所述第二膜来将电流施加到所述第一膜和所述第二膜; 测量单元,用于测量第一和第二节点之间的电位差; 以及用于均匀地保持第一和第二膜中的至少一个的温度的温度调节单元。
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公开(公告)号:US20110163314A1
公开(公告)日:2011-07-07
申请号:US13119584
申请日:2009-09-30
申请人: Jin Su Park , Byung Young Yoon , Jung Won Park , Jung Hwan Cho , Sang Beom Kim
发明人: Jin Su Park , Byung Young Yoon , Jung Won Park , Jung Hwan Cho , Sang Beom Kim
IPC分类号: H01L29/66
CPC分类号: G01N27/4074 , G01N27/4065
摘要: The present invention provides a nitrogen-oxide gas sensor that is able to measure nitric oxide and nitrogen dioxide at the same time and ensure measurement accuracy and long stability. For these purposes, the nitrogen-oxide gas sensor includes: an oxide ion conductive solid electrolyte; a primary film that contacts the solid electrolyte and is made of a p-type semi-conductor metal oxide; a secondary film that contacts the solid electrolyte and is made of a p-type semiconductor metal oxide; an n-type semiconductor metal oxide that is included in at least one of the primary and secondary films; a power source that applies electric power to the primary and secondary films by electrically connecting a primary node to the primary film and a secondary node to the secondary film; and a measurement unit that measures the electric potential difference between the primary and secondary nodes.
摘要翻译: 本发明提供一种氮氧化物气体传感器,其能够同时测量一氧化氮和二氧化氮,并且确保测量精度和长的稳定性。 为了这些目的,氮氧化物气体传感器包括:氧化物离子导电固体电解质; 与固体电解质接触并由p型半导体金属氧化物制成的初级膜; 与固体电解质接触并由p型半导体金属氧化物制成的二次膜; 包含在初级膜和次级膜中的至少一种中的n型半导体金属氧化物; 电源,其通过将主节点与初级膜电连接到次级膜和次级节点而向初级膜和次级膜施加电力; 以及测量单元,其测量主节点和次节点之间的电位差。
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公开(公告)号:US09719714B2
公开(公告)日:2017-08-01
申请号:US13317690
申请日:2011-10-26
申请人: Yong Han Kim , Kook Jeong Seo , Jung Won Park
发明人: Yong Han Kim , Kook Jeong Seo , Jung Won Park
CPC分类号: F25D17/042 , F25B2600/0251 , F25D17/065 , F25D2317/0411 , F25D2317/04111 , F25D2317/061 , F25D2400/02 , F25D2700/10 , F25D2700/122 , F25D2700/123 , F25D2700/14
摘要: A refrigerator and a dehumidification control method thereof to effectively perform both temperature compensation and dehumidification so as to prevent formation of dewdrops in a refrigerating compartment of the refrigerator. The control method includes detecting a temperature of outside air around the refrigerator to judge whether or not the detected temperature corresponds to a low-temperature mode requiring dehumidification, heating a refrigerating compartment by operating a refrigerating compartment heater and a refrigerating compartment fan for dehumidification if the low-temperature mode is judged, cooling the refrigerating compartment by operating a compressor while continuously operating the refrigerating compartment fan, and simultaneously cooling and heating the refrigerating compartment to enable simultaneous implementation of temperature compensation by heating of the refrigerating compartment and dehumidification by cooling of the refrigerating compartment.
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