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    • 1. 发明专利
    • Air conditioning device
    • 空调设备
    • JP2011007357A
    • 2011-01-13
    • JP2009148638
    • 2009-06-23
    • Sanyo Electric Co Ltd三洋電機株式会社
    • KAMIMURA TAKESHIISHII YOSHINORISANO AKIRAYAMAGISHI KIYOMA
    • F25B27/00
    • PROBLEM TO BE SOLVED: To achieve air conditioning high in energy consumption efficiency according to air conditioning load.SOLUTION: An air conditioning device has a compressor 12 constituting a refrigerating cycle, a generator 30, a capacitor 31 charged by the generator, a gas engine 10 driving the compressor and the generator, a control means C for controlling a rotational frequency of the gas engine according to an air conditioning load, and a temperature detecting means 37 for detecting a temperature of a conditioned room in which the air conditioning is performed by the refrigerating cycle, or a suction air temperature of a user-side heat exchanger 15 constituting the refrigerating cycle. In the case that the detection temperature of the temperature detecting means rises to a prescribed on-point temperature with the compressor stopped, the compressor is started in a motor driving mode, and the mode is moved to a gas engine driving mode when the detection temperature rises to a prescribed threshold value temperature higher than the on-point temperature after the starting.
    • 要解决的问题:根据空调负荷实现高能耗的空调。解决方案:空调装置具有构成制冷循环的压缩机12,发电机30,由发电机充电的电容器31,燃气发动机 驱动压缩机和发电机的控制装置C,用于根据空调负荷控制燃气发动机的转速的控制装置C和温度检测装置37,用于检测通过以下方式执行空调的调节室的温度 制冷循环或构成制冷循环的使用侧热交换器15的吸入空气温度。 在压缩机停止时温度检测装置的检测温度上升到规定的点温度的情况下,以马达驱动模式启动压缩机,并且当检测温度 上升到开始后高于接通点温度的规定阈值温度。
    • 2. 发明专利
    • Gas heat pump type air conditioning device
    • 气体热泵类型空调设备
    • JP2011007356A
    • 2011-01-13
    • JP2009148602
    • 2009-06-23
    • Sanyo Electric Co Ltd三洋電機株式会社
    • KAMIMURA TAKESHIISHII YOSHINORISANO AKIRAYAMAGISHI KIYOMA
    • F25B27/00
    • PROBLEM TO BE SOLVED: To achieve air conditioning high in energy consumption efficiency according to air conditioning load.SOLUTION: The air conditioning device has a compressor 12 constituting a refrigerating cycle, a generator 30, a capacitor 31 charged by the generator, a gas engine 10 driving the compressor and the generator, and a control device C for controlling a rotational frequency of the gas engine according to an air conditioning load, and is provided with a gas engine driving mode for driving the compressor 12 and the generator 30 by the gas engine 10, and a motor drive mode for driving the compressor 12 in a state that the gas engine 10 is separated from the compressor 12 and the generator 30, and the generator 30 is used as the motor by using energy charged to the capacitor 31.
    • 要解决的问题:根据空调负荷实现高能耗的空调。解决方案:空调装置具有构成制冷循环的压缩机12,发电机30,由发电机充电的电容器31,燃气发动机 10,驱动压缩机和发电机的控制装置C,以及根据空调负荷控制燃气发动机的转速的控制装置C,具有通过气体驱动压缩机12和发电机30的燃气发动机驱动模式 发动机10和用于在气体发动机10与压缩机12和发电机30分离的状态下驱动压缩机12的电动机驱动模式,并且通过使用充电到电容器31的能量将发电机30用作电动机。
    • 3. 发明专利
    • 電力変換装置
    • 电源转换器件
    • JP2015012715A
    • 2015-01-19
    • JP2013136999
    • 2013-06-28
    • 三洋電機株式会社Sanyo Electric Co Ltd
    • SHIRAKAWA TAKASHIKAMIMURA TAKESHI
    • H02M7/48H05K9/00
    • 【課題】地絡検知に用いる配線を短くした際の不具合を低減し誤検出を抑制する。【解決手段】太陽電池の出力電力を直流電力から交流電力に変換する電力変換部2と、電子部品41、42、43が実装されノイズを減衰するノイズフィルタNF1、NF2を構成する第1基板4と、第1基板4と電力変換部2との間を接続し、直流電力が供給される電力線L1〜L4と、電力線L1〜L4に配置され、太陽電池の地絡を検出するための地絡センサ5と、第1基板4の投影面上に多くが重ならないように隣接して配置され、電力変換部2の制御を行う第2基板3と、地絡センサ5と第2基板3とを接続する信号線LSと、備え、ポリオレフィンを含有する難燃性及び絶縁性のチューブに信号線LSを通すと共に、当該信号線LSを第1基板4の電子部品41、42、43が実装されている面の上を跨いで第2基板3から地絡センサ5までつなげる。【選択図】図1
    • 要解决的问题:在用于接地故障检测的布线短路的情况下,通过减少故障来抑制错误检测。解决方案:电力转换装置包括电力转换部分2,其将太阳能电池的输出功率从直流电 连接在第一基板4和电力转换部2之间的构成噪声滤波器NF1,NF2的第一基板4,其中安装电子部件41,42,43以降低噪声,电力线L1-L4,以提供DC 电源,布置在电力线L1-L4处的用于检测太阳能电池的接地故障的接地故障传感器5,邻接设置成不与第一基板4的突出表面重叠的第二基板3,用于 控制电力转换部分2以及连接接地故障传感器5和第二基板3的信号线LS。使信号线LS穿透包含聚烯烃的耐火绝缘管。 信号线LS通过跨越安装有电子部件41,42,43的第一基板4的表面从第二基板3连接到接地故障传感器5。
    • 5. 发明专利
    • Grid-connected system
    • 网格连接系统
    • JP2011019366A
    • 2011-01-27
    • JP2009163572
    • 2009-07-10
    • Sanyo Electric Co Ltd三洋電機株式会社
    • YAMAGISHI KIYOMAKAMIMURA TAKESHISANO AKIRAISHII YOSHINORIAKABOSHI DAIGO
    • H02J3/38F24F11/02
    • PROBLEM TO BE SOLVED: To provide a grid-connected system that achieves the simplification of wiring between units and the reduction in construction costs.SOLUTION: The grid-connected system S is constructed from a plurality of gas heat pump air-conditioners 1A-1N having a generator 30, respectively. A power-generation amount is instructed from a grid-connected inverter 40A of the air-conditioner which serves as a master unit in the plurality of air-conditioners to grid-connected inverters 40B or the like of the other air-conditioners which serve made as slave units via inter-inverter communication lines 67A-67C, etc. The grid-connected inverter 40A of the air-conditioner serving as the master unit transmits a parallel-off signal which instructs a power-generation stop to the grid-connected inverters 40B or the like of the other air-conditioners which serve as the slave units via the inter-inverter communication lines 67A or the like.
    • 要解决的问题:提供一种实现单元之间的布线简化并且降低施工成本的并网系统。解决方案:并网系统S由多个气体热泵空调1A-1N 具有发电机30。 从作为多台空调机的主机的空调机的并网逆变器40A向与其他空调机的并列逆变器40B等相连的发电量指示 作为从单元通过逆变器间通信线路67A-67C等。作为主单元的空调机的并网逆变器40A向并联逆变器发送指示发电停止的并行关闭信号 40B等通过逆变器间通信线路67A等作为从单元的空调机。
    • 8. 发明专利
    • System interconnection system using gas heat pump-type air conditioner
    • 使用气体热泵型空气调节器的系统互连系统
    • JP2011012848A
    • 2011-01-20
    • JP2009155400
    • 2009-06-30
    • Sanyo Electric Co Ltd三洋電機株式会社
    • ISHII YOSHINORIYAMAGISHI KIYOMAKAMIMURA TAKESHISANO AKIRA
    • F24F11/02F24F5/00F25B27/00
    • PROBLEM TO BE SOLVED: To achieve high energy consumption efficiency by efficiently returning surplus electric power in driving of a gas engine to a system while properly controlling air-conditioning.SOLUTION: In this system interconnection system S including a generator 30, a gas heat pump-type air conditioner 1 having an AC/DC converting section 34, and a convertor 40 for converting DC electric power converted by the AC/DC converting section into AC electric power of the system to which an air conditioner 1 is connected, and returning the same to the system, the convertor 40 executes the control to follow up a point of the maximum output power, and controls the electric current flowing to the convertor 40 from the AC/DC converting section 34 to follow up a point of the maximum output voltage of the convertor 40 on the basis of an operating condition of the air conditioner 1.
    • 要解决的问题:通过在适当地控制空调的同时有效地将燃气发动机驱动到系统中将多余的电力返回到系统来实现高能量消耗效率。解决方案:在该系统互连系统S中,包括发电机30,气体热泵 具有AC / DC转换部分34的空调器1和用于将由AC / DC转换部分转换的DC电力转换成连接有空调装置1的系统的AC电力的转换器40, 与系统相同,转换器40执行控制以跟踪最大输出功率的点,并且控制从AC / DC转换部分34流向转换器40的电流以跟随最大输出电压的点 基于空调机1的运转状态。
    • 10. 发明专利
    • Air-conditioning power generating system
    • 空调发电系统
    • JP2009216260A
    • 2009-09-24
    • JP2008057915
    • 2008-03-07
    • Sanyo Electric Co Ltd三洋電機株式会社
    • MIYAMOTO TETSUONAKAYAMA YOSHINORITSUNODA YUKIHISAYAMAGISHI KIYOMAROKAMIMURA TAKESHIISHII YOSHINORITAKAHASHI HISASHI
    • F25B27/00F24F5/00F25B49/00H02P9/04
    • PROBLEM TO BE SOLVED: To provide an engine-driven air conditioner with a power generator capable of reducing power consumption and making development design easy. SOLUTION: A system supplies electric power needed in a system interconnecting invertor 33 for performing power supply to a commercial power supply system 35 using electric power generated by a power generator 11 driven by an engine 10. Thus an air-conditioning side and a power generation side can be electrically separated in the engine-driven air conditioner 1 with the power generator, so that all that's required is that only the development design agreed with a provision relating to the air conditioner is performed at the air-conditioning side, and the development design agreed with a provision relating to a power generating device can be performed at the power generation side, thus the development design can be easily performed. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种具有能够降低功耗并且使开发设计容易的发电机的发动机驱动的空调。 解决方案:系统提供系统互连逆变器33中所需的电力,以使用由发动机10驱动的发电机11产生的电力向商用电源系统35供电。因此,空调侧和 在发动机驱动的空调装置1中,发电侧能够与发电机电隔离,所以只要在空调侧进行与空调相关的开发设计, 并且可以在发电侧执行与发电装置有关的规定的开发设计,因此可以容易地进行开发设计。 版权所有(C)2009,JPO&INPIT