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    • 1. 发明申请
    • POWER CONTROL APPARATUS AND POWER CONTROL METHOD USING SAME
    • 功率控制装置和功率控制方法
    • US20120226572A1
    • 2012-09-06
    • US13509134
    • 2010-11-12
    • Jong Soo ParkSeong Geun HeoSung Nam Ryoo
    • Jong Soo ParkSeong Geun HeoSung Nam Ryoo
    • G06F1/26G06Q30/06
    • H02J3/32H02J3/14Y02B70/3225Y04S20/222
    • Disclosed is a power control method and a power control apparatus. The power control method comprises the steps of: a first charge comparison step for receiving charge information of supplied power, and comparing the charge of the supplied power with a preset reference charge; and a second charge comparison step for comparing the charge of the supplied power with the preset lowest charge. The method comprises the steps of: a first power quantity comparison step for confirming a stored power quantity within a power storage unit, and comparing the stored power quantity with a preset reference power quantity; and a second power quantity comparison step for comparing the stored power quantity with a preset power quantity demand. Further, the method comprises a control step for selecting one of externally supplied power and internally stored power as the usage power for the customer, through at least one of a charge comparison step and the power quantity comparison step.
    • 公开了功率控制方法和功率控制装置。 功率控制方法包括以下步骤:第一充电比较步骤,用于接收所提供的电力的电荷信息,并将所供电的电量与预设的参考电荷进行比较; 以及第二电荷比较步骤,用于将所提供的电力的电荷与预设的最低电荷进行比较。 该方法包括以下步骤:第一功率量比较步骤,用于确定蓄电单元内的存储电量,并将存储的功率量与预设的参考功率量进行比较; 以及第二功率量比较步骤,用于将所存储的功率量与预设的功率需求进行比较。 此外,该方法包括通过电荷比较步骤和电力量比较步骤中的至少一个,选择外部供应的电力和内部存储的电力之一作为用户的使用功率的控制步骤。
    • 7. 发明申请
    • FOURIER TRANSFORM COMPUTATION FOR DISTRIBUTED PROCESSING ENVIRONMENTS
    • 用于分布式处理环境的FOURIER变换计算
    • US20140101219A1
    • 2014-04-10
    • US13648804
    • 2012-10-10
    • Ping Tak Peter TangJong Soo ParkVladimir Petrov
    • Ping Tak Peter TangJong Soo ParkVladimir Petrov
    • G06F17/14
    • G06F17/142
    • Fourier transform computation for distributed processing environments is disclosed. Example methods disclosed herein to compute a Fourier transform of an input data sequence include performing first processing on the input data sequence using a plurality of processors, the first processing resulting in an output data sequence having more data elements than the input data sequence Such example methods also include performing second processing on the output data sequence using the plurality of processors, the output data sequence being permutated among the plurality of processors, each of the processors performing the second processing on a respective permutated portion of the output data sequence to determine a respective, ordered segment of the Fourier transform of the input data sequence.
    • 公开了用于分布式处理环境的傅里叶变换计算。 用于计算输入数据序列的傅里叶变换的示例方法包括使用多个处理器对输入数据序列执行第一处理,第一处理产生具有比输入数据序列更多的数据元素的输出数据序列。 还包括使用多个处理器对输出数据序列执行第二处理,输出数据序列在多个处理器之间被排列,每个处理器对输出数据序列的相应置换部分执行第二处理,以确定相应的 ,输入数据序列的傅里叶变换的有序段。
    • 8. 发明授权
    • Smart server and smart device
    • 智能服务器和智能设备
    • US08694360B2
    • 2014-04-08
    • US13071097
    • 2011-03-24
    • Jong Soo ParkJong Hwa SongJong Ho WonWoo Hyun Paik
    • Jong Soo ParkJong Hwa SongJong Ho WonWoo Hyun Paik
    • G06Q10/00G06Q30/00G06F17/00G06G7/00G06Q30/02
    • G06Q30/0283G06Q10/06G06Q50/06H02J3/14H02J2003/143H02J2003/146Y02B70/3266Y04S20/224Y04S20/242Y04S50/14
    • A smart server and smart device are disclosed, by which a new power unit price (hereinafter named a combined power unit price) can be calculated in consideration of an internally generated electricity quantity instead of using an external power unit price as it is. The present invention includes a power demand obtaining unit obtaining a home power demand for at least one electronic appliance including a smart device, a generated quantity detecting unit detecting an internally generated power quantity for at least one home generator, a price information receiving unit receiving power information including external power price information on an external power via a network, and a combined unit price output unit outputting a combined power unit price using an external power demand and the internally generated power quantity and the external power price information, wherein the external power demand is calculated based on the power demand.
    • 公开了一种智能服务器和智能设备,通过该智能服务器和智能设备,可以考虑内部产生的电量而不是直接使用外部电力单价来计算新的电力单价(以下称为组合电力单价)。 本发明包括:功率需求获取单元,其获得至少一个电子设备的家用电力需求,所述电力设备包括智能设备,产生量检测单元,其检测至少一个家庭发电机的内部产生的电力量;价格信息接收单元接收功率 包括经由网络的外部电力的外部电力价格信息的信息,以及使用外部电力需求和内部产生的电力量和外部电力价格信息输出组合电力单价的组合单价格输出单元,其中,所述外部电力需求 是根据电力需求计算的。
    • 9. 发明授权
    • Structure for detachable coupling of containers
    • 容器可拆卸联接结构
    • US08613358B2
    • 2013-12-24
    • US12726878
    • 2010-03-18
    • Jong Soo Park
    • Jong Soo Park
    • B65D1/02B65D21/00
    • B65D21/0222B65D17/4012B65D21/0213B65D21/0223B65D2517/0056B65D2517/0062
    • A container structure is provided for detachable coupling of at least two containers. The detachable coupling structure of a first container includes a top portion with an upstanding perimeter having radial protrusions extending from a surface of the upstanding perimeter, and a container bottom portion having a complementary structure to engage the radial protrusions of the top portion of a second container for the purpose of detachably coupling two or more containers end to end. In one embodiment, two containers placed end to end with their respective structures aligned to be engaged are rotated in opposite directions to fully engage the protrusions of one container with the complementary structure of the other. A rim around the top portion of a container in a second embodiment has a larger diameter than the top portion. The rim may be pushed through a flexible opening into a recess in the bottom of another container.
    • 提供容器结构用于至少两个容器的可拆卸联接。 第一容器的可拆卸联接结构包括具有直立周边的顶部,其具有从直立周边的表面延伸的径向突起,以及具有互补结构的容器底部,以与第二容器的顶部的径向突起接合 目的是为了将两个或更多个容器端到端可拆卸地连接。 在一个实施例中,两个容器彼此端对齐放置,并且其相应的结构对准以便接合,这两个容器在相反的方向上旋转,以使一个容器的突起与另一容器的互补结构完全接合。 在第二实施例中围绕容器顶部的边缘具有比顶部更大的直径。 轮辋可以通过柔性开口推入另一个容器底部的凹槽中。