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    • 1. 发明申请
    • Thermally Driven Heat Pump for Heating and Cooling
    • 用于加热和冷却的热驱动热泵
    • US20110259039A1
    • 2011-10-27
    • US12745168
    • 2008-11-26
    • Hongbin MaJoseph A. BoswellPeng Cheng
    • Hongbin MaJoseph A. BoswellPeng Cheng
    • F25B17/00F25B41/00
    • F25B1/08F25B15/02F25B2341/0011F25B2341/0015Y02A30/277Y02B30/62
    • A thermally driven heat pump includes a low temperature evaporator for evaporating cooling fluid to remove heat A first heat exchanger located at an outlet of a converging/diverging chamber of a first ejector receives a flow of primary fluid vapor and cooling fluid vapor ejected from the first ejector for condensing a portion of the cooling fluid vapor An absorber located in the first heat exchanger absorbs cooling fluid vapor into an absorbing fluid to reduce the pressure in the first heat exchanger A second heat exchanger located at an outlet of a converging/diverging chamber of a second ejector receives primary fluid vapor and cooling fluid vapor ejected from the second ejector for condensing the cooling fluid vapor and the primary fluid vapor A separator in communication with the second ejector, the low temperature evaporator and the primary fluid evaporator separates the primary fluid from the cooling fluid.
    • 热驱动热泵包括用于蒸发冷却流体以去除热量的低温蒸发器。位于第一喷射器的会聚/发散室的出口处的第一热交换器接收从第一喷射器喷射的主流体蒸气和冷却流体蒸汽的流动 用于冷凝冷却流体蒸气的一部分的喷射器位于第一热交换器中的吸收器将冷却流体蒸气吸收到吸收流体中以降低第一热交换器中的压力位于位于会聚/发散室的出口处的第二热交换器 第二喷射器接收从第二喷射器喷射的主要流体蒸汽和冷却流体蒸气,用于冷凝冷却流体蒸气和与第二喷射器连通的主流体蒸汽A分离器,低温蒸发器和主流体蒸发器将主流体从 冷却液。
    • 3. 发明授权
    • Hybrid thermoelectric-ejector cooling system
    • 混合热电喷射器冷却系统
    • US08763408B2
    • 2014-07-01
    • US12896597
    • 2010-10-01
    • Hongbin MaPeng ChengJoseph A. Boswell
    • Hongbin MaPeng ChengJoseph A. Boswell
    • F25B21/02F28D15/00
    • F25B21/02F28D15/043
    • A hybrid thermoelectric-ejector active cooling system having an increased Coefficient of Performance (COP) when compared to typical thermoelectric cooling modules. A thermoelectric cooling module is integrated with an ejector cooling device so that heat from the thermoelectric cooling module is rejected to a high temperature evaporator of the ejector cooling device. This provides for a total COP greater than the sum of the COPs of the thermoelectric cooling module and ejector cooling device individually. For example, given 1 unit input power into the thermoelectric cooling module, the heat received by the cold side of the thermoelectric cooling module would be COPTEC×1; and the energy rejected by the hot side of the thermoelectric cooling module and to drive the ejector cooling device would be COPTEC+1. Thus, the cooling received by the low temperature evaporator of the ejector cooling device is COPEJ×(COPTEC+1); and therefore total COPTE-Ej-AC is COPEj+COPTEC+COPEj×COPTEC. In addition, the hybrid thermoelectric ejector active cooling system will be able to operate at higher temperature differentials than standalone thermoelectric cooling devices.
    • 与典型的热电冷却模块相比,具有增加的性能系数(COP)的混合热电喷射器主动冷却系统。 热电冷却模块与喷射器冷却装置集成,使得来自热电冷却模块的热量被排斥到喷射器冷却装置的高温蒸发器。 这提供了大于热电冷却模块和喷射器冷却装置的COP的总和的总COP。 例如,给热电冷却模块输入1个单位输入功率,热电冷却模块的冷端接收的热量为COPTEC×1; 并且由热电冷却模块的热侧拒绝并驱动喷射器冷却装置的能量将为COPTEC + 1。 因此,由喷射器冷却装置的低温蒸发器接收的冷却是COPEJ×(COPTEC + 1); 因此总COPTE-Ej-AC为COPEj + COPTEC + COPEj×COPTEC。 此外,混合热电喷射器主动冷却系统将能够以比独立的热电冷却装置更高的温度差运行。
    • 4. 发明申请
    • HYBRID THERMOELECTRIC-EJECTOR COOLING SYSTEM
    • 混合热电喷枪冷却系统
    • US20110079022A1
    • 2011-04-07
    • US12896597
    • 2010-10-01
    • Hongbin MaPeng ChengJoseph A. Boswell
    • Hongbin MaPeng ChengJoseph A. Boswell
    • F25B21/02F28D15/04
    • F25B21/02F28D15/043
    • A hybrid thermoelectric-ejector active cooling system having an increased Coefficient of Performance (COP) when compared to typical thermoelectric cooling modules. A thermoelectric cooling module is integrated with an ejector cooling device so that heat from the thermoelectric cooling module is rejected to a high temperature evaporator of the ejector cooling device. This provides for a total COP greater than the sum of the COPs of the thermoelectric cooling module and ejector cooling device individually. For example, given 1 unit input power into the thermoelectric cooling module, the heat received by the cold side of the thermoelectric cooling module would be COPTEC×1; and the energy rejected by the hot side of the thermoelectric cooling module and to drive the ejector cooling device would be COPTEC+1. Thus, the cooling received by the low temperature evaporator of the ejector cooling device is COPEJ×(COPTEC+1); and therefore total COPTE-Ej-AC is COPEj+COPTEC+COPEj×COPTEC. In addition, the hybrid thermoelectric ejector active cooling system will be able to operate at higher temperature differentials than standalone thermoelectric cooling devices.
    • 与典型的热电冷却模块相比,具有增加的性能系数(COP)的混合热电喷射器主动冷却系统。 热电冷却模块与喷射器冷却装置集成,使得来自热电冷却模块的热量被排斥到喷射器冷却装置的高温蒸发器。 这提供了大于热电冷却模块和喷射器冷却装置的COP的总和的总COP。 例如,给热电冷却模块输入1个单位输入功率,热电冷却模块的冷端接收的热量为COPTEC×1; 并且由热电冷却模块的热侧拒绝并驱动喷射器冷却装置的能量将为COPTEC + 1。 因此,由喷射器冷却装置的低温蒸发器接收的冷却是COPEJ×(COPTEC + 1); 因此总COPTE-Ej-AC为COPEj + COPTEC + COPEj×COPTEC。 此外,混合热电喷射器主动冷却系统将能够以比独立的热电冷却装置更高的温度差运行。
    • 6. 发明申请
    • THREE-IN-ONE MARCEL WAVER WITH CURLING METHOD
    • US20220361640A1
    • 2022-11-17
    • US17318270
    • 2021-05-12
    • Peng Cheng
    • Peng Cheng
    • A45D1/04
    • The three-in-one marcel waver with curling method in the field of hairdressing device is described, including the first hairdressing section, the second hairdressing section and a base. The first hairdressing section is movably connected to the base, and the second hairdressing section is fixedly connected to the base. The second hairdressing section consists of perming unit, combing unit, and switch button, with perming unit and switch button at the inner side, and the combing unit at the outer side. The perming unit links the second hairdressing section thanks to the arc-shaped transitional edges designed laterally. The combing unit comprises the first comb, the second comb, holder, the second comb hole, and the first comb hole. The holder has the second comb hole and the first comb hole. The invention features the integrated design of splint, electric comb and hair curler, meeting the needs of various hairstyles of terminal customers, and providing better user experience by catering to consumer demand.
    • 9. 发明申请
    • UPLINK NOISE ESTIMATION FOR VIRTUAL MIMO
    • 虚拟MIMO的上行噪声估计
    • US20140064391A1
    • 2014-03-06
    • US13878708
    • 2010-10-11
    • Peng ChengChanglong XuXuebin YangFeng ZhouYang Gao
    • Peng ChengChanglong XuXuebin YangFeng ZhouYang Gao
    • H04L25/03
    • H04L25/03197H04B7/024H04B7/0413H04B7/0452H04B17/345
    • A system and methods for estimating a noise power level in an uplink signal for a virtual MIMO system is disclosed. The system comprises a demodulation reference signal (DMRS) module configured to obtain a DMRS receive symbol from the uplink signal and determine a DMRS sequence for a first UE in the virtual MIMO system. An autocorrelation module is configured to calculate an average autocorrelation value for the subcarriers in the uplink signal. A cross-correlation module is configured to calculate first and second cross-correlation values of the uplink signal Rz (l) for values of l selected such that the sum of the received power from the first UE and the second UE can be accurately estimated. A noise power level module is configured to determine the noise power level for the uplink signal using the average autocorrelation value and the first and second cross correlation values.
    • 公开了一种用于估计虚拟MIMO系统的上行链路信号中的噪声功率电平的系统和方法。 该系统包括解调参考信号(DMRS)模块,其被配置为从上行链路信号获得DMRS接收符号,并确定虚拟MIMO系统中的第一UE的DMRS序列。 自相关模块被配置为计算上行链路信号中的子载波的平均自相关值。 互相关模块被配置为针对所选择的l的值计算上行链路信号Rz(1)的第一和第二互相关值,使得可以准确地估计来自第一UE和第二UE的接收功率之和。 噪声功率电平模块被配置为使用平均自相关值和第一和第二互相关值来确定上行链路信号的噪声功率电平。