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    • 42. 发明授权
    • Method and apparatus for transmitting and receiving data in resource allocation in wireless communication system
    • 用于在无线通信系统中资源分配中发送和接收数据的方法和装置
    • US08464127B2
    • 2013-06-11
    • US12972984
    • 2010-12-20
    • Se-Ho KimHee-Won Kang
    • Se-Ho KimHee-Won Kang
    • G06F11/00
    • H03M13/6306H03M13/09H03M13/6544H04L1/1861H04W72/042
    • A method and an apparatus for transmitting and receiving data in resource reallocation in a wireless communication system are provided. The method includes transmitting control information for the uplink resource reallocation to a corresponding terminal, according to the uplink resource reallocation, receiving an uplink packet from the corresponding terminal and determining whether the corresponding terminal receives the control information, and when the corresponding terminal does not receive the control information, informing the corresponding terminal of the determination result by transmitting a NULL signal over a feedback channel for previous uplink resource allocation. Thus, the resource utilization of the system can be raised by preventing repeated data retransmission until a next resource reallocation period.
    • 提供了一种用于在无线通信系统中资源重新分配中发送和接收数据的方法和装置。 该方法包括根据上行链路资源重新分配向对应的终端发送用于上行链路资源重定位的控制信息,从对应的终端接收上行链路分组,并确定对应的终端是否接收到控制信息,当相应的终端没有接收到 所述控制信息,通过在反馈信道上传送空信号以通知相应终端所述确定结果,用于先前的上行链路资源分配。 因此,可以通过防止重复的数据重传直到下一个资源重新分配周期来提高系统的资源利用率。
    • 43. 发明授权
    • System for forming aerosols and cooling device incorporated therein
    • 用于形成气溶胶的系统和结合在其中的冷却装置
    • US06978625B1
    • 2005-12-27
    • US10380851
    • 2001-09-19
    • Se-Ho Kim
    • Se-Ho Kim
    • B08B7/02B01F3/00B01F3/02B08B7/00B24C1/00C01B32/55F25B1/00F25B7/00F28D7/00F28D7/04F28D7/10H01L21/304F17C7/02
    • B08B7/0092B01F3/0092B01F3/022B01F2003/0057B24C1/003F25B1/00F25B7/00F25B2309/06
    • The present invention relates to a cooling device (30) of the reverse Carnot cycle-type using a refrigerant, and an areosol generation system including it. The cooling device (30) includes a refrigerator (310, 320) of the reverse Carnot cycle-type, a cleaning medium conduit (120), a temperature sensor (130), and a heater (140). The intermediate portion of the cleaning medium conduit and the evaporator are wound like a coil in the same configuration so as to maximize the contacting area therebetween. The temperature sensor (130) measures the temperature of the carbon dioxide discharged from the cooling device (30), and the heater (140) is arranged to contact the evaporator of the refrigerator and the intermediate portion of the cleaning medium conduit so as to precisely adjust the liquefying rate of the carbon dioxide according to the temperature measured by the temperature sensor. The carbon dioxide is refrigerated at a temperature in the range of −80° C. to −100° C. through the cooling device (30), transformed into liquid phase.
    • 本发明涉及一种使用制冷剂的反向卡诺循环型冷却装置(30),以及包括该冷却装置的水溶液生成系统。 冷却装置(30)包括反向卡诺循环型的冰箱(310,320),清洁介质导管(120),温度传感器(130)和加热器(140)。 清洁介质管道和蒸发器的中间部分以相同的构造缠绕成线圈,以使其间的接触面积最大化。 温度传感器(130)测量从冷却装置(30)排出的二氧化碳的温度,并且加热器(140)布置成接触冰箱的蒸发器和清洁介质管道的中间部分,以便精确地 根据温度传感器测量的温度调节二氧化碳的液化速率。 二氧化碳通过冷却装置(30)在-80℃至-100℃的温度范围内冷藏,转化成液相。
    • 44. 发明申请
    • System for forming aerosols and cooling device incorporated therein
    • 用于形成气溶胶的系统和结合在其中的冷却装置
    • US20050235655A1
    • 2005-10-27
    • US11167470
    • 2005-06-27
    • Se-Ho Kim
    • Se-Ho Kim
    • B08B7/02B01F3/00B01F3/02B08B7/00B24C1/00C01B32/55F25B1/00F25B7/00F28D7/00F28D7/04F28D7/10H01L21/304F17C7/02F28G1/00F25B29/00
    • B08B7/0092B01F3/0092B01F3/022B01F2003/0057B24C1/003F25B1/00F25B7/00F25B2309/06
    • The present invention relates a cooling device of the reverse Carnot cycle-type using a refrigerant, and an aerosol generation system including it. The cooling device includes a refrigerator of the reverse Carnot cycle-type, a cleaning medium conduit, a temperature sensor, and a heater. The intermediate portion of the cleaning medium conduit and the evaporator are wound like a coil in the same configuration so as to maximize the contacting area therebetween. The temperature sensor measures the temperature of the carbon dioxide discharged from the cooling device, and the heater is arranged to contact the evaporator of the refrigerator and the intermediate portion of the cleaning medium conduit so as to precisely adjust the liquefying rate of the carbon dioxide according to the temperature measured by the temperature sensor. The carbon dioxide is refrigerated at a temperature in the range of −80° C. to −100° C. through the cooling device, transformed into liquid phase.
    • 本发明涉及一种使用制冷剂的反向卡诺循环型冷却装置及其包括的气溶胶发生系统。 冷却装置包括反向卡诺循环型冰箱,清洁介质导管,温度传感器和加热器。 清洁介质管道和蒸发器的中间部分以相同的构造缠绕成线圈,以使其间的接触面积最大化。 温度传感器测量从冷却装置排放的二氧化碳的温度,并且加热器布置成接触冷藏库的蒸发器和清洁介质导管的中间部分,以便根据以下步骤精确地调节二氧化碳的液化速率: 到由温度传感器测量的温度。 二氧化碳通过冷却装置在-80℃至-100℃的温度范围内冷藏,转化成液相。