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    • 4. 发明申请
    • Method and device for detecting state of overcurrent protector for battery
    • 电池过电流保护器状态检测方法及装置
    • US20130338952A1
    • 2013-12-19
    • US13979380
    • 2011-09-14
    • Lin LiMingming LiuYanni MengLingqiao TengBaohang ZhouShuwang Wei
    • Lin LiMingming LiuYanni MengLingqiao TengBaohang ZhouShuwang Wei
    • G01R31/28
    • G01R31/2827G01R31/3277H02J1/10H02J7/0029H02J7/0031H02J7/34H02J2007/0039
    • The disclosure discloses a method and device for detecting a state of an overcurrent protector for a battery, wherein a voltage Uout of a power supply and a voltage Ubat of a battery connected to the power supply via an overcurrent protector is acquired, and U=|Uout-Ubat| is calculated; when UL≦U≦UH and |Ibat|≦Imin, the voltage of the power supply is adjusted to be U′out, wherein UL and UH are the minimum value and maximum value of a difference between the voltage of the power supply and the voltage of the battery, respectively, Ibat is a current of the battery, and Imin is a current detecting precision for detecting a current equipment of the battery; the voltage of the battery U′bat after adjusting the voltage of the power supply is acquired, and U′=|U′out-U′bat| is calculated; and a state of the overcurrent protector for the battery is determined. With the disclosure, in the case that the difference between the voltage of the battery and the supply voltage is small, by regulating the supply voltage and comparing the voltage difference across the overcurrent protector again, accurate detection of the state of the overcurrent protector for the battery as well as reduction of detecting costs is enabled.
    • 本公开公开了一种用于检测电池的过电流保护器的状态的方法和装置,其中获得电源的电压Uout和经由过电流保护器连接到电源的电池的电压Ubat,并且U = | Uout-Ubat | 计算; 当UL @ U @ UH和| Ibat | @Imin时,电源的电压被调整为U'out,其中UL和UH是电源电压与电源之间的差的最小值和最大值 电池的电压Ibat是电池的电流,Imin是用于检测电池的当前设备的电流检测精度; 在调整电源电压后,电池U'bat的电压被获取,U'= | U'out-U'bat | 计算; 确定电池的过电流保护器的状态。 通过公开,在电池的电压与电源电压的差小的情况下,通过调节电源电压并再次比较过电流保护器两端的电压差,精确地检测过电流保护器的状态 电池以及检测成本的降低。
    • 5. 发明申请
    • Charging Management Method and Apparatus for Storage Battery
    • 蓄电池充电管理方法及装置
    • US20120217934A1
    • 2012-08-30
    • US13504337
    • 2010-04-22
    • Baohang ZhouMingming LiuYanni MengLingqiao TengShuwang Wei
    • Baohang ZhouMingming LiuYanni MengLingqiao TengShuwang Wei
    • H02J7/00
    • H01M10/44H01M10/443Y02E60/12
    • In order to reasonably adjust charging current of a storage battery according to temperature, realize quick, safe and reliable charging of the storage battery, and effectively prolong the service life of the storage battery, the present invention provides a charging management method and apparatus for a storage battery. The method comprises the following steps: monitoring discharge capacity of a storage battery, and determining discharge depth of the storage battery according to the discharge capacity and total capacity of the storage battery (S102); comparing the discharge depth of the storage battery with a preset battery equalizing charging threshold (S104); and when the discharge depth of the storage battery is greater than or equal to the preset battery equalizing charging threshold capacity, actuating a temperature-control charging mode to charge the storage battery, wherein the temperature-control charging mode is to adjust charging current according to the temperature of the battery (S106).
    • 为了根据温度合理调整蓄电池的充电电流,实现蓄电池的快速,安全可靠的充电,有效延长蓄电池的使用寿命,本发明提供了一种充电管理方法和装置, 蓄电池 该方法包括以下步骤:监测蓄电池的放电容量,并根据蓄电池的放电容量和总容量确定蓄电池的放电深度(S102); 将蓄电池的放电深度与预设电池均衡充电阈值进行比较(S104); 并且当蓄电池的放电深度大于或等于预设电池均衡充电阈值容量时,启动温度控制充电模式对蓄电池充电,其中温控充电模式根据 电池的温度(S106)。
    • 6. 发明授权
    • Fan type temperature control method and device
    • 风机型温度控制方法及装置
    • US08900042B2
    • 2014-12-02
    • US13498642
    • 2010-05-12
    • Yanni MengHui RongMingming LiuBaohang ZhouShuwang WeiLingqiao Teng
    • Yanni MengHui RongMingming LiuBaohang ZhouShuwang WeiLingqiao Teng
    • F24F7/007H05K7/20G05D23/19G06F1/20
    • H05K7/20209G05D23/1912G06F1/20G06F1/206
    • A fan type temperature control method and device are provided. The device includes a fan unit including a plurality of fans and cooling an apparatus to be cooled, power supplies (v1,v2) supplying power for the fans in the fan unit, and a fan control unit which controls the fans as follows: when temperature t of the apparatus is lower than critical temperature t1 of a first temperature detect switch (k01), all fans stop; when t is higher than t1 and lower than critical temperature t2 of a second temperature detect switch (k02), all fans rotate at half speed; when t is higher than t2 while lower than critical temperature t3 of a third temperature detect switch (k03), a first fan part (M1) rotates at full speed and a second fan part (M2) stops; when t is higher than t3, all fans rotate at full speed.
    • 提供了一种风扇式温度控制方法和装置。 该装置包括:风扇单元,包括多个风扇并冷却要冷却的设备;为风扇单元中的风扇供电的电源(v1,v2);以及风扇控制单元,其如下控制风扇:当温度 设备的温度低于第一温度检测开关(k01)的临界温度t1,所有风扇都停止; 当t高于t1且低于第二温度检测开关(k02)的临界温度t2时,所有风扇以半速转动; 当t高于t2,而低于第三温度检测开关(k03)的临界温度t3时,第一风扇部分(M1)全速旋转,第二风扇部分(M2)停止; 当t高于t3时,所有风扇以全速旋转。
    • 7. 发明申请
    • Device and Method for Detecting State of Overload and Overcurrent Protector
    • 用于检测过载和过流保护器状态的装置和方法
    • US20130314100A1
    • 2013-11-28
    • US13983824
    • 2011-08-30
    • Baohang ZhouYanni MengMingming LiuLin LiLingqiao TengShuwang WeiHui Rong
    • Baohang ZhouYanni MengMingming LiuLin LiLingqiao TengShuwang WeiHui Rong
    • G01R31/327
    • G01R31/327G01R31/3277
    • A device and method for detecting a state of a load overcurrent protector are disclosed. The above-mentioned device includes: an input module (22), configured to be connected with two ends of the load overcurrent protector, and generate two output signals respectively at two output ends thereof; a high level signal gating module (24), configured to receive the two output signals generated by the input module (22), and gate and output a high level signal according to the above-mentioned two output signals; a low level signal gating module (26), configured to receive the two output signals generated by the input module (22), and gate and output a low level signal according to the above-mentioned two output signals; and a detecting module (28), configured to detect a voltage difference between the above-mentioned high level signal and the low level signal.
    • 公开了一种用于检测负载过电流保护器的状态的装置和方法。 上述装置包括:输入模块(22),被配置为与负载过流保护器的两端连接,并在其两个输出端分别产生两个输出信号; 高电平信号选通模块(24),被配置为接收由所述输入模块(22)产生的两个输出信号,并根据上述两个输出信号选通并输出高电平信号; 低电平信号选通模块(26),被配置为接收由所述输入模块(22)产生的两个输出信号,并根据上述两个输出信号选通并输出低电平信号; 以及检测模块(28),被配置为检测上述高电平信号和低电平信号之间的电压差。
    • 9. 发明授权
    • Communication power with multi-energy-source supply and control method
    • 通信电源采用多能源供电控制方式
    • US09537320B2
    • 2017-01-03
    • US13982256
    • 2011-09-01
    • Mingming LiuYanni MengLingqiao TengBaohang ZhouShuwang Wei
    • Mingming LiuYanni MengLingqiao TengBaohang ZhouShuwang Wei
    • G06F1/26H02J4/00H02J1/10H02J3/38
    • H02J4/00H02J1/10H02J1/102H02J3/381H02J3/383H02J3/386Y02E10/563Y02E10/763Y10T307/658
    • The present disclosure discloses a communication power with multi-energy-source supply and a control method. The communication power includes: an inputting unit (21), configured to receive at least two kinds of electrical energy and provide the at least two kinds of electrical energy to an allocating unit (22); the allocating unit (22), configured to allocate at least one kind of electrical energy of the at least two kinds of electrical energy determined by a monitoring unit (25) to a power converting unit (23) according to the control of the monitoring unit (25); the power converting unit (23), configured to perform power conversion on the at least one kind of electrical energy allocated by the allocating unit (22), and then provide the converted power to an outputting unit (24); the outputting unit (24), configured to supply power to an external load; and the monitoring unit (25). With the present disclosure, the modules for input allocating, power converting, etc. for different energy sources may be shared, and overall management may be achieved for multiple energy sources.
    • 本公开公开了一种具有多能源供应的通信功率和控制方法。 通信功率包括:输入单元(21),被配置为接收至少两种电能并将至少两种电能提供给分配单元(22); 所述分配单元(22)被配置为根据所述监视单元(25)的控制将由监视单元(25)确定的所述至少两种电能的至少一种电能分配给功率转换单元(23) (25); 所述电力转换单元(23)被配置为对由所述分配单元(22)分配的所述至少一种电能执行功率转换,然后将转换的功率提供给输出单元(24); 所述输出单元(24)被配置为向外部负载供电; 和监视单元(25)。 通过本公开,可以共享用于不同能量的用于输入分配,功率转换等的模块,并且可以为多个能量源实现总体管理。
    • 10. 发明授权
    • Method and device for controlling charge of battery
    • 用于控制电池充电的方法和装置
    • US09225186B2
    • 2015-12-29
    • US13979379
    • 2011-08-30
    • Lingqiao TengMingming LiuYanni MengBaohang ZhouShuwang Wei
    • Lingqiao TengMingming LiuYanni MengBaohang ZhouShuwang Wei
    • G06F17/50H02J7/00
    • H02J7/0052H01M10/443H01M10/486H02J7/0091H02J7/045H02J7/047
    • A method for controlling charge of a battery includes: when charging a battery, monitoring a temperature of the battery in real time, and acquiring a corresponding dynamic factor according to the temperature of the battery, wherein the dynamic factor is used for characterizing a dynamically regulating component of a charge current coefficient during the charge process; calculating a maximum allowed charge current according to the dynamic factor and preset static factors; and controlling the charge of the battery according to the maximum allowed charge current. This enables adaptive charge management according to application scenarios, which effectively avoids the situation where the charge current of the battery is too high or too low, improves the environmental adaptability of battery charging, and further extends the service life of the battery and saves costs. Also provided is a method for controlling charge of a battery.
    • 一种用于控制电池充电的方法包括:当对电池充电时,实时监控电池的温度,并根据电池的温度获取相应的动态因子,其中动态因子用于表征动态调节 充电过程中充电电流系数的分量; 根据动态因子和预设静态因素计算最大允许充电电流; 并根据最大允许充电电流控制电池的充电。 这样可以根据应用场景进行自适应充电管理,有效避免电池充电电流过高或过低的情况,提高电池充电的环境适应性,进一步延长电池的使用寿命,节约成本。 还提供了一种用于控制电池充电的方法。