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    • 1. 发明申请
    • DAMPING CHARGING DEVIDE
    • 减震充电
    • US20150372528A1
    • 2015-12-24
    • US14307859
    • 2014-06-18
    • FU-TZU HSUCHIEH-SEN TU
    • FU-TZU HSUCHIEH-SEN TU
    • H02J7/02
    • H02J50/10H02J7/025
    • A damping charging device includes a power output unit connectable to an electrical energy generating device to regulate a voltage of electrical energy output by the electrical energy generating device and then output a voltage-regulated electric power; a control circuit maintaining the electric power output by the power output unit in a constant-current and constant-voltage state; a damping inductor connected to an anode of a capacitor battery to be charged; and a high-frequency oscillation switch connected to a cathode of the capacitor battery. The damping inductor includes a silicon steel core having inductance that increases with increased frequency and an amorphous silicon core having inductance that increases with decreased frequency. The actuated high-frequency oscillation switch causes the damping inductor to store and release electrical energy alternately at high frequency, and the damping inductor releases electrical energy having frequency response to offset capacitive reactance and charge the capacitor battery efficiently.
    • 阻尼充电装置包括能够连接到电能发生装置的功率输出单元,用于调节由电能产生装置输出的电能的电压,然后输出调压电力; 控制电路,其将由所述功率输出单元输出的电力维持在恒定电流和恒定电压状态; 连接到要充电的电容器电池的阳极的阻尼电感器; 以及连接到电容器电池的阴极的高频振荡开关。 阻尼电感器包括具有随着频率增加而增加的电感的硅钢芯和具有随着频率降低而增加的电感的非晶硅芯。 启动的高频振荡开关使阻尼电感器以高频率交替存储和释放电能,并且阻尼电感器释放具有频率响应以抵消容抗的电能并有效地对电容器电池充电。
    • 3. 发明申请
    • MAGNETOELECTRIC COGENERATOR
    • 磁电式加热器
    • US20120181794A1
    • 2012-07-19
    • US13008525
    • 2011-01-18
    • FU-TZU HSUChieh-Sen Tu
    • FU-TZU HSUChieh-Sen Tu
    • H02K7/18F03G7/08H02K53/00
    • H02N11/002H02K99/10
    • A magnetoelectric cogenerator uses a magnetic fuel cell stack to convert renewable energy for outputting, and works basing on the first law of thermodynamics to covert potential into kinetic energy through the known Hall Effect and enables out-coupling of electric energy. For DC output, the magnetic fuel cell stack is an inductance-type high-frequency transformer; and for AC output, a DC permanent-magnet motor and a permanent-magnet self-excited generator enable forming of the cell stack, i.e. to combine with a power storage module to form the magnetoelectric cogenerator. A damper absorbs or eliminates anti-electromotive force (EMF) or eddy current from time to time for the DC permanent-magnet motor to always maintain in an optimal state for normal operation to reduce power consumption. The magnetoelectric cogenerator is able to stably generate power without producing any emission to thereby solve the problems of power supply and environmental protection in the electric energy application fields.
    • 磁电发电机使用磁性燃料电池堆来转换可再生能源进行输出,并基于第一热力学定律,通过已知的霍尔效应将电位转化为动能,并实现电能的外耦合。 对于直流输出,磁性燃料电池堆是电感型高频变压器; 并且对于AC输出,DC永磁电动机和永磁自激发电机能够形成电池堆,即与蓄电模块组合以形成磁电热发电机。 减震器不时吸收或消除反电动势(EMF)或涡流,以使直流永磁电动机始终保持在正常运行的最佳状态,以降低功耗。 磁电热发生器能够稳定地发电而不产生任何发射,从而解决了电能应用领域的供电和环境保护的问题。
    • 4. 发明申请
    • ELECTROLYTE CONVEYANCE DEVICE FOR FLOW BATTERY
    • 用于流动电池的电解液输送装置
    • US20160351926A1
    • 2016-12-01
    • US14721674
    • 2015-05-26
    • FU-TZU HSUChieh-Sen Tu
    • FU-TZU HSUChieh-Sen Tu
    • H01M8/04H01M8/20H01M8/18
    • H01M8/18H01M8/04291Y02E60/528
    • An electrolyte conveyance device for flow battery includes a first permanent magnet direct current (PMDC) motor, a second PMDC motor, a power-output shaft, a first screw rod conveyance unit, and a second screw rod conveyance unit. The power-output shaft is a common power-output shaft of the first and second PMDC motors for driving the first and second screw rod conveyance units to operate at the same time, so as to convey a positive and a negative electrolyte, respectively, from positive and negative electrolyte tanks to a battery cell of the flow battery. The first and second PMDC motors serve as filters on a charging and a discharging circuit of the flow battery, and are driven by the electrical energy of removed surges to operate for conveying the electrolytes without consuming the electrical energy stored in the flow battery.
    • 用于流动电池的电解液输送装置包括第一永久磁铁直流(PMDC)电动机,第二PMDC电动机,动力输出轴,第一螺杆输送单元和第二螺杆输送单元。 动力输出轴是第一和第二PMDC电动机的公共动力输出轴,用于驱动第一和第二螺杆输送单元同时操作,以便分别将正极和负极电解质从 正极和负极的电解液罐到流动电池的电池单元。 第一和第二PMDC电动机用作流动电池的充电和放电电路上的滤波器,并且由除去的电涌的电能驱动以操作以输送电解质,而不消耗存储在流动电池中的电能。
    • 5. 发明申请
    • RENEWABLE ENERGY ENHANCED APPARATUS
    • 可再生能源增强装置
    • US20120313436A1
    • 2012-12-13
    • US13159073
    • 2011-06-13
    • FU-TZU HSUChien-Sen Tu
    • FU-TZU HSUChien-Sen Tu
    • H02J3/32
    • H02J3/383H02J3/32H02J3/386Y02E10/563Y02E10/566Y02E10/763Y02E70/30Y10T307/516Y10T307/944
    • A renewable energy enhanced apparatus includes a rechargeable buffer battery unit; a renewable energy generation unit for generating electric energy in the form of a cell; a rectifying and charging unit for converting AC into DC and charging the DC into the buffer battery unit; a power conversion and energy multiplication unit for converting electric energy into electric power, so as to couple out electric power and upgrade the power efficiency of a renewable energy power plant; and an electric power output unit for converting the electric power into low-frequency normal electric power for use. The renewable energy enhanced apparatus also includes an electrical damper for absorbing and recycling any anti-electromotive force and eddy current produced due to a load effect, in order to form another renewable energy for reuse, so as to upgrade the power efficiency of a renewable energy power plant.
    • 可再生能源增强装置包括可充电缓冲电池单元; 用于产生电池形式的电能的可再生能源发电单元; 整流和充电单元,用于将AC转换成DC并将DC充电到缓冲电池单元中; 用于将电能转换成电力的功率转换和能量倍增单元,用于耦合电力并提高可再生能源发电厂的功率效率; 以及用于将电力转换为低频正常电力以供使用的电力输出单元。 可再生能源增强装置还包括用于吸收和再循环由于负载效应而产生的任何反电动势和涡流的电阻尼器,以便形成用于再利用的另一可再生能源,从而提高可再生能源的功率效率 发电厂。
    • 6. 发明申请
    • MAGNETIC FUEL CELL-BASED BATTERY
    • 基于磁性燃料电池的电池
    • US20120268071A1
    • 2012-10-25
    • US13092423
    • 2011-04-22
    • FU-TZU HSUChien-Sen Tu
    • FU-TZU HSUChien-Sen Tu
    • H02J7/00
    • H02J7/328
    • A magnetic fuel cell-based battery includes a buffer battery unit; a static magnetic field unit including permanent magnets for amplifying electric energy; a potential to kinetic energy converting unit for generating an electrical resonance effect of oscillating eddy current to replace magnetic field shifting; a magnetic fuel cell stack forming unit including a magnetoresistance element constituted by a Hall element and achieving Hall Effect and forming a cell stack through amplification by a magnetic field effect of the permanent magnets of the static magnetic field unit; and a rectifying and charging unit for rectifying and charging the cell stack formed by the magnetic fuel cell stack forming unit to the buffer battery unit to form a permanent battery. Therefore, the magnetic fuel cell-based battery is a permanent battery formed by combining a buffer battery unit with a magnetic fuel cell stack forming unit that uses permanent magnets as fuel body.
    • 一种基于燃料电池的磁性电池包括缓冲电池单元; 包括用于放大电能的永磁体的静磁场单元; 用于产生振荡涡流的电共振效应以代替磁场偏移的动能转换单元的潜力; 磁性燃料电池堆形成单元,包括由霍尔元件构成的磁阻元件,实现霍尔效应,并通过静磁场单元的永磁体的磁场效应进行放大而形成电池堆; 以及整流和充电单元,用于将由所述磁性燃料电池堆形成单元形成的电池堆整流和充电到所述缓冲电池单元以形成永久电池。 因此,基于燃料电池的电池为通过将缓冲电池单元与使用永久磁铁作为燃料体的磁性燃料电池堆形成单元组合形成的永久电池。