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    • 2. 发明授权
    • Method and apparatus for controlling order dependency of items in a multiple FIFO queue structure
    • 用于控制多FIFO队列结构中项目的顺序依赖性的方法和装置
    • US06643718B1
    • 2003-11-04
    • US09621070
    • 2000-07-21
    • Chao-Yu ChenHui-Neng ChangSui-His Chu
    • Chao-Yu ChenHui-Neng ChangSui-His Chu
    • G06F9315
    • G06F7/00G06F9/52G06F9/522
    • A barrier control scheme controls the order dependency of items in a multiple FIFO queue structure. The barrier control scheme includes a cycle ID generator, a barrier bit/barrier ID generator and a cycle ID and barrier ID comparator. Each incoming item to the FIFOs is assigned a cycle ID. If an incoming item of a first FIFO has order dependency on items of a second FIFO, a barrier bit is set and a barrier ID is determined and generated by the barrier bit/barrier ID generator. The barrier bit and barrier ID are inserted in the first FIFO along with other fields of the incoming item. When an item is to be consumed, the cycle ID and barrier ID comparator compares its barrier ID and the cycle IDs of items in the second FIFO. The item to be consumed is blocked until all items on which the item is dependent are consumed in the second FIFO.
    • 障碍控制方案控制多FIFO队列结构中项目的顺序依赖性。 屏障控制方案包括循环ID发生器,屏障位/屏障ID发生器和周期ID和屏障ID比较器。 每个进入FIFO的输入项都被分配一个循环ID。 如果第一FIFO的输入项目具有与第二FIFO的项目有顺序依赖关系,则设置障碍位并且屏障ID /屏障ID发生器确定并产生屏障ID。 屏障位和屏障ID与输入项目的其他字段一起插入第一个FIFO。 当一个物品被消耗时,循环ID和屏障ID比较器比较其屏障ID和第二个FIFO中项目的循环ID。 要消费的项目被阻止,直到所有项目依赖的项目在第二个FIFO中被消耗。
    • 3. 发明申请
    • ADSORPTION REFRIGERATOR WITH THERMOSTATIC CONTROL
    • 吸热式制冷器具有温控功能
    • US20120085111A1
    • 2012-04-12
    • US12949840
    • 2010-11-19
    • Chao-Yu ChenYu-Ming SunChi-Bin Wu
    • Chao-Yu ChenYu-Ming SunChi-Bin Wu
    • F25B15/00
    • F25B49/046
    • An adsorption type refrigerator with thermostatic control includes a first vacuum chamber, a second vacuum chamber, a third vacuum chamber, and a passage structure. The first vacuum chamber accommodates a first adsorption bed, a first condenser, and a first evaporator, and the second vacuum chamber accommodates a second adsorption bed, a second condenser, and a second evaporator. The third vacuum chamber contains a third evaporator. The passage structure guides hot water into the first adsorption bed and guides cold water into the second adsorption bed simultaneously, or guides the cold water into the first adsorption bed and guides the hot water into the second adsorption bed simultaneously. According to the ambient temperature or the temperature of ice water produced by the adsorption refrigerator, the cold water is stopped being guided into the first or the second adsorption bed timely, thereby ceasing the refrigeration temporarily and achieving the thermostatic control.
    • 具有恒温控制的吸附型冰箱包括第一真空室,第二真空室,第三真空室和通道结构。 第一真空室容纳第一吸附床,第一冷凝器和第一蒸发器,第二真空室容纳第二吸附床,第二冷凝器和第二蒸发器。 第三真空室包含第三蒸发器。 通道结构将热水引导到第一吸附床中,同时将冷水引导到第二吸附床中,或者将冷水引导到第一吸附床中并将热水同时引导到第二吸附床中。 根据环境温度或吸附式冰箱产生的冰水的温度,停止冷水暂时被引导到第一吸附床或第二吸附床中,暂时停止制冷,实现恒温控制。
    • 5. 发明申请
    • Method and Apparatus for Positioning Mobile Device
    • 移动设备定位方法与装置
    • US20110032152A1
    • 2011-02-10
    • US12752693
    • 2010-04-01
    • Chi-Chung LoSheng-Po KuoJui-Hao ChuYu-Chee TsengLun-Chia KuoChao-Yu Chen
    • Chi-Chung LoSheng-Po KuoJui-Hao ChuYu-Chee TsengLun-Chia KuoChao-Yu Chen
    • G01S3/02
    • G01S5/0294G01C21/28G01S5/0278
    • A method for positioning a mobile device includes following steps. Based on a prior location point of the mobile device, many sample particles are generated according to a prior probability distribution associated with the prior location point. A current moving track or a current behavior mode of the mobile device is obtained, and the sample particles are moved according to at least one of the current moving track and the current behavior mode. A current supposed status is obtained based on a radio frequency signal received by the mobile device. A current probability distribution of the sample particles corresponding to the radio frequency signal or the current supposed status is generated to obtain corresponding weights of the moved sample particles. A current location point of the mobile device is obtained according to the weights and distribution of the sample particles.
    • 一种用于定位移动设备的方法包括以下步骤。 基于移动设备的先前位置点,根据与先前位置点相关联的先前概率分布来生成许多样本粒子。 获得移动设备的当前移动轨迹或当前行为模式,并且根据当前移动轨迹和当前行为模式中的至少一个来移动样本粒子。 基于由移动设备接收的射频信号获得当前假定状态。 生成对应于射频信号或当前假设状态的样本粒子的当前概率分布,以获得移动的样本粒子的相应权重。 根据样品颗粒的重量和分布,获得移动设备的当前位置点。
    • 9. 发明授权
    • Method and apparatus for positioning mobile device
    • 移动设备定位方法和装置
    • US08330654B2
    • 2012-12-11
    • US12752693
    • 2010-04-01
    • Chi-Chung LoSheng-Po KuoJui-Hao ChuYu-Chee TsengLun-Chia KuoChao-Yu Chen
    • Chi-Chung LoSheng-Po KuoJui-Hao ChuYu-Chee TsengLun-Chia KuoChao-Yu Chen
    • G01S3/02
    • G01S5/0294G01C21/28G01S5/0278
    • A method for positioning a mobile device includes following steps. Based on a prior location point of the mobile device, many sample points are generated according to a prior probability distribution associated with the prior location point. A current moving track or a current moving status of the mobile device is obtained, and the sample points are updated according to at least one of the current moving track and the current moving status. A current estimated position is obtained based on a radio frequency signal received by the mobile device. A current probability distribution of the sample points corresponding to the radio frequency signal or the current estimated position is generated to obtain corresponding weights of the updated sample points. A current location point of the mobile device is obtained according to the weights and distribution of the sample points.
    • 一种用于定位移动设备的方法包括以下步骤。 基于移动设备的先前位置点,根据与先前位置点相关联的先前概率分布来生成许多采样点。 获得移动设备的当前移动轨迹或当前移动状态,并且根据当前移动轨迹和当前移动状态中的至少一个来更新采样点。 基于由移动设备接收的射频信号获得当前估计位置。 产生与射频信号或当前估计位置对应的采样点的当前概率分布,以获得更新的采样点的相应权重。 根据采样点的权重和分布,获取移动设备的当前位置点。
    • 10. 发明申请
    • ADSORPTION TYPE REFRIGERATOR THAT AUTOMATICALLY DETERMINES SWITCHOVER POINT
    • 自动确定切换点的吸附式制冷器
    • US20120102990A1
    • 2012-05-03
    • US12965974
    • 2010-12-13
    • Chao-Yu ChenYu-Ming SunChi-Bin Wu
    • Chao-Yu ChenYu-Ming SunChi-Bin Wu
    • F25B49/00
    • F25B49/046F25B17/083Y02A30/277Y02A30/278Y02B30/62Y02B30/64
    • The present invention discloses an adsorption type refrigerator that automatically determines the switchover point. The adsorption type refrigerator includes a first vacuum chamber, a second vacuum chamber, a third vacuum chamber and a waterway structure. The waterway structure is connected to a first adsorption bed in the first vacuum chamber and a second adsorption bed in the second vacuum chamber. The waterway structure simultaneously conveys hot water into the first adsorption bed and cold water into the second adsorption bed, or simultaneously conveys cold water into the first adsorption bed and hot water into the second adsorption bed so as to allow the first and the second adsorption beds to conduct adsorption and desorption alternatively. This alternation creates pressure variation in the three vacuum chambers, which is then utilized to automatically determine the switchover point at which the refrigerator can provide and maintain a cold, stable environment.
    • 本发明公开了一种自动确定切换点的吸附型冰箱。 吸附型冰箱包括第一真空室,第二真空室,第三真空室和水路结构。 水路结构连接到第一真空室中的第一吸附床和第二真空室中的第二吸附床。 水道结构同时将热水输送到第一吸附床和冷水进入第二吸附床,或同时将冷水输送到第一吸附床和热水进入第二吸附床,以允许第一和第二吸附床 交替进行吸附和解吸。 这种交替在三个真空室中产生压力变化,然后用于自动确定冰箱可以提供并保持冷,稳定环境的切换点。