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    • 1. 发明申请
    • SATELLITE-BASED AUTOMATIC STEERING SYSTEM
    • 基于卫星的自动转向系统
    • WO2012009793A1
    • 2012-01-26
    • PCT/CA2011/000827
    • 2011-07-19
    • KIM, DonghyunBOND, Jason
    • KIM, DonghyunBOND, Jason
    • G01S19/40B60W30/00B66C13/48B66C17/00G01S19/12G01S19/46G01S19/44
    • G01S19/55B60W2550/402B66C13/48B66C19/007G01S19/04G01S19/05
    • Methods, systems, and machine-interpretable coding for causing a processor of a vehicle controller installed in a vehicle such as a rubber-tired gantry (RTG) to generate, using known position associated with a base station and signals received from a Global Navigation Satellite System (GNSS) receiver located at the base station, a satellite observation error estimate; generate, using the satellite observation error estimate and a position of vehicle determined using signals received from a GNSS receiver mounted on the vehicle, at least one control signal representing a navigation command executable by at least one control device of the vehicle; and to output the control signal for execution by the control device. Generation of control signals can include use of synchronous and asynchronous processing, ambiguity resolution processes, and as fuzzy logic and PID and other control feedback loops.
    • 方法,系统和机器可解释编码,用于使安装在诸如橡胶轮架(RTG)的车辆中的车辆控制器的处理器使用与基站相关联的已知位置和从全球导航卫星 位于基站的系统(GNSS)接收机,卫星观测误差估计; 使用所述卫星观测误差估计和使用从安装在所述车辆上的GNSS接收器接收的信号确定的车辆的位置生成表示可由所述车辆的至少一个控制装置执行的导航命令的至少一个控制信号; 并输出控制信号以供控制装置执行。 控制信号的产生可以包括使用同步和异步处理,歧义解析过程,以及模糊逻辑和PID等控制反馈回路。
    • 5. 发明申请
    • NETWORK SYSTEM
    • 网络系统
    • WO2011162552A3
    • 2012-05-03
    • PCT/KR2011004574
    • 2011-06-22
    • LG ELECTRONICS INCAHN JUNHOKIM YANGHWANLEE HOONBONGLEE KOONSEOKGO SEOGHOHAN JONGHEEKIM DONGHYUN
    • AHN JUNHOKIM YANGHWANLEE HOONBONGLEE KOONSEOKGO SEOGHOHAN JONGHEEKIM DONGHYUN
    • G06Q50/00G06Q10/06
    • G06F1/26G06Q10/04G06Q10/06G06Q50/06
    • One embodiment of the present invention relates to a network system. The network system according to said embodiment of the present invention comprises at least one component selected from an energy demand/supply unit to which energy is supplied and an energy management unit which manages an energy demand/supply component. The energy demand/supply unit or the energy management unit receives information relating to energy charge. The amount of energy used or energy charged when the component is controlled on the basis of at least the information relating to the energy charge can be smaller than the amount of energy used or energy charged when the component is not controlled on the basis of at least the information relating to the energy charge. If the information relating to the energy charge is high-cost information, the function of one component of the energy demand/supply unit is limited, and the operating time or output of the energy demand/supply unit is adjusted after the completion of the high-cost information period in accordance with the limited function of one component.
    • 本发明的一个实施例涉及网络系统。 根据本发明的所述实施例的网络系统包括从供应能量的能量需求/供应单元和管理能量需求/供应部件的能量管理单元中选择的至少一个部件。 能源需求/供应单元或能源管理单元接收与能量费用有关的信息。 当基于至少与能量电荷有关的信息来控制组件时所使用的能量或能量的量可以小于当该组件至少基于至少控制组件而被控制时所使用的能量或能量的量 有关能源费用的资料。 如果与能源费有关的信息是高成本信息,则能量需求/供给单元的一个部件的功能受到限制,能量需求/供应单元的运行时间或输出在高电平完成后被调整 - 根据一个组件的功能有限的信息周期。
    • 6. 发明申请
    • CLOTHES TREATING APPARATUS
    • 衣服处理设备
    • WO2011139095A2
    • 2011-11-10
    • PCT/KR2011/003346
    • 2011-05-04
    • LG ELECTRONICS INC.KO, HyojinLEE, SangikKIM, DonghyunAHN, SeungphyoKIM, Jeongyun
    • KO, HyojinLEE, SangikKIM, DonghyunAHN, SeungphyoKIM, Jeongyun
    • D06F58/22
    • D06F58/22D06F58/28D06F2058/2854
    • An apparatus for treating clothes includes an accommodating space, an air supply unit, a duct unit, a filter unit, a substance removal unit and a collection unit that is separate from the filter unit and the substance removal unit. The accommodating space is configured to receive one or more clothing articles. The air supply unit is configured to supply air to the accommodating space. The duct unit is configured to guide discharge of air from the accommodating space. The filter unit is positioned to filter substances from air discharged from the accommodating space through the duct unit. The substance removal unit is configured to move substances remaining on a portion of the filter unit. The collection unit is configured to collect substances moved from the filter unit by the substance removal unit.
    • 用于处理衣物的装置包括容纳空间,空气供应单元,管道单元,过滤器单元,物质去除单元和与过滤器单元和物质去除单元分离的收集单元。 容纳空间构造成容纳一个或多个衣物。 空气供应单元被构造成将空气供应到容纳空间。 导管单元构造成引导从容纳空间排出空气。 过滤器单元被定位成通过管道单元过滤从容纳空间排出的空气中的物质。 物质去除单元构造成移动残留在过滤器单元的一部分上的物质。 收集单元被配置为收集通过物质去除单元从过滤器单元移动的物质。
    • 9. 发明申请
    • CONTROL TECHNOLOGY FOR CLOTHES TREATMENT APPARATUS
    • 衣物处理装置的控制技术
    • WO2011139097A3
    • 2012-06-21
    • PCT/KR2011003348
    • 2011-05-04
    • LG ELECTRONICS INCKIM DONGHYUNKO HYOJINLEE SANGIKKIM JEONGYUN
    • KIM DONGHYUNKO HYOJINLEE SANGIKKIM JEONGYUN
    • D06F58/28D06F39/10D06F58/22
    • D06F58/22D06F25/00D06F58/28D06F2058/2864
    • A control method for a clothes treatment apparatus including a foreign substance removal unit for removing foreign substances from a filter unit is provided. The control method includes a cycle starting step (S10) for starting a drying cycle of the clothes treatment apparatus and a filter unit cleaning step (SI 3) which is performed at least one time before the drying cycle is finished. For that, the control method includes a finishing time point determining step (S I 1) in order to determine a finishing time point of the drying cycle. It is therefore periodically identified whether a present time point is a predetermined time point before a finishing time point of the drying cycle (S 12). The filter unit cleaning step finished when the drying cycle is terminated (S14). Prior to starting the drying cycle (S10), it may be identified whether a former drying cycle ended abnormally (PI) and a filter unit first cleaning step (P2) may be carried out based on the result of said identification step.
    • 提供了一种用于衣物处理设备的控制方法,该衣物处理设备包括用于从过滤单元去除异物的异物去除单元。 该控制方法包括用于开始衣物处理设备的干燥循环的循环开始步骤(S10)和在干燥循环结束之前至少执行一次的过滤单元清洁步骤(S13)。 为此,控制方法包括结束时间点确定步骤(S11),以确定干燥周期的结束时间点。 因此周期性地识别当前时间点是否是干燥循环的结束时间点之前的预定时间点(S12)。 当干燥周期结束时,过滤单元清洁步骤结束(S14)。 在开始干燥循环之前(S10),可以基于所述识别步骤的结果识别前一个干燥循环是否异常结束(PI)和过滤器单元第一清洁步骤(P2)。