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    • 2. 发明授权
    • HVAC control method for a remote start motor vehicle
    • HVAC控制方法用于远程起动机动车辆
    • US06745582B1
    • 2004-06-08
    • US10340053
    • 2003-01-10
    • Thomas Martin UrbankAaron P. RunningKarma Vir Sangwan
    • Thomas Martin UrbankAaron P. RunningKarma Vir Sangwan
    • B60H132
    • B60H1/00864B60H1/00735B60H1/00792
    • A manually controlled motor vehicle HVAC system is activated for automatically pre-heating or pre-cooling the cabin following remote starting of the vehicle engine. When the engine has been remotely started, an HVAC controller estimates initial outside air and cabin air temperatures, and determines if pre-heating or pre-cooling is appropriate based on the estimated initial temperatures, the engine coolant temperature and a measure of the engine soak time. When pre-heating or pre-cooling is deemed to be appropriate, the HVAC parameters normally set by a driver interface panel are selectively overridden based on the estimated initial outside air and cabin air temperatures. In a particularly advantageous embodiment, the initial outside air temperature is estimated based on an inlet air temperature sensor of the engine or on a refrigerant pressure sensor of the HVAC system prior to activation of the refrigerant compressor.
    • 在车辆发动机远程启动之后,手动控制的机动车HVAC系统被激活以自动预热或预冷却舱室。 当发动机已经远程启动时,HVAC控制器估计初始的外部空气和客舱空气温度,并且基于估计的初始温度,发动机冷却剂温度和发动机浸泡的量度来确定预热或预冷是否合适 时间。 当预热或预冷被认为是合适的时候,由驾驶员接口面板通常设定的HVAC参数将根据估计的初始外部空气和机舱空气温度而被选择性地覆盖。 在特别有利的实施例中,基于制冷剂压缩机启动之前的发动机的入口空气温度传感器或HVAC系统的制冷剂压力传感器来估计初始外部空气温度。
    • 3. 发明授权
    • Inlet air control method for a vehicle HVAC system having an air quality sensor
    • 具有空气质量传感器的车辆HVAC系统的进气控制方法
    • US06800022B2
    • 2004-10-05
    • US10369249
    • 2003-02-19
    • Thomas Martin UrbankKarma Vir Sangwan
    • Thomas Martin UrbankKarma Vir Sangwan
    • B60H100
    • B60H1/00849B60H1/008B60H3/0085
    • An improved HVAC control method immediately closes an air inlet valve to provide full cabin air recirculation when an outside air quality sensor detects polluted air, and thereafter progressively re-opens the air inlet valve at a determined rate when the air quality sensor detects unpolluted air. Preferably, the air quality sensor quantifies the pollution level of the outside air, and the opening rate of the air inlet valve is determined based on the detected pollution level. Following a high level of detected air pollution, the valve is re-opened at a relatively slow rate, and following a low level of detected air pollution, the valve is re-opened at a relatively fast rate.
    • 当外部空气质量传感器检测到污染的空气时,改进的HVAC控制方法立即关闭进气阀,以提供完整的机舱空气再循环,然后当空气质量传感器检测到未被污染的空气时,以确定的速率逐渐重新打开进气阀。 优选地,空气质量传感器量化外部空气的污染水平,并且基于检测到的污染水平来确定进气阀的打开速率。 在检测到空气污染程度很高之后,阀门以相对较慢的速度重新开启,并且在检测到的空气污染水平低后,阀门以相对较快的速度重新开启。
    • 5. 发明授权
    • Integrated control valve for a variable capacity compressor
    • 用于可变容量压缩机的集成控制阀
    • US07063511B2
    • 2006-06-20
    • US10628633
    • 2003-07-28
    • Thomas Martin UrbankKarma Vir SangwanErnesto Jose Gutierrez
    • Thomas Martin UrbankKarma Vir SangwanErnesto Jose Gutierrez
    • F04B1/26
    • F04B27/1804F04B2027/1813F04B2027/1827F04B2027/185F04B2027/1854F04B2027/1859F04B2205/04
    • An integrated capacity control valve for a variable capacity refrigerant compressor includes an integral pressure sensor that is continuously coupled to a discharge port of the valve for measuring the refrigerant discharge pressure. A plunger of the control valve is disposed within a passage coupling the compressor crankcase to the discharge port, and is positioned by pneumatic and electric control elements to regulate the refrigerant suction pressure. The plunger has intersecting axial and lateral bores that define a continuous passage between the discharge port and a cavity in which the pressure sensor is retained so that the sensor is continuously exposed to the discharge pressure regardless of the plunger position, and refrigerant discharge pressure in the lateral bore produces a bias force on the plunger that compensates the pneumatic suction pressure setpoint for a pressure drop between the evaporator and the suction port of the valve.
    • 用于可变容量制冷剂压缩机的集成容量控制阀包括一体式压力传感器,其连续地连接到用于测量制冷剂排出压力的阀的排出口。 控制阀的柱塞设置在将压缩机曲轴箱连接到排出口的通道内,并且通过气动和电气控制元件定位以调节制冷剂吸入压力。 柱塞具有相交的轴向和侧向孔,其在排出口和保持压力传感器的空腔之间形成连续通道,使得传感器连续暴露于排出压力,而与柱塞位置无关,并且制冷剂排出压力 侧向孔在柱塞上产生偏置力,其补偿气动吸入压力设定点,用于蒸发器和阀的吸入口之间的压力降。
    • 6. 发明授权
    • Air quality system for a vehicle
    • 汽车空气质量体系
    • US06758739B1
    • 2004-07-06
    • US10378784
    • 2003-03-04
    • Karma Vir SangwanThomas Martin UrbankSusan Claire Vasko
    • Karma Vir SangwanThomas Martin UrbankSusan Claire Vasko
    • B60H306
    • B60H1/008B60H1/00864B60H1/248B60H3/0085B60H3/0625
    • An air quality system for controlling air quality in a cabin of a vehicle is provided. The air quality system utilizes three air quality sensors for detecting three air quality parameters. A controller is responsive to the air quality sensors. The controller is programmed to determine a current value of the air quality parameters from the air quality sensors and to determine whether the current value of any of the air quality parameters exceeds a predetermined limit. The predetermined limits for the air quality parameters are based on levels indicative of poor air quality for the cabin. The controller is operable between purging and non-purging modes to purge the air from the cabin in the purging mode when the current value of any of the measured air quality parameters exceeds the respective predetermined limit.
    • 提供一种用于控制车辆舱内的空气质量的空气质量系统。 空气质量系统利用三个空气质量传感器检测三个空气质量参数。 控制器响应于空气质量传感器。 控制器被编程为从空气质量传感器确定空气质量参数的当前值,并且确定任何空气质量参数的当前值是否超过预定极限。 空气质量参数的预定限制基于指示舱室空气质量差的水平。 当任何测量的空气质量参数的当前值超过相应的预定限度时,控制器可操作在净化和非净化模式之间,以在净化模式中清除来自舱室的空气。
    • 10. 发明授权
    • Heating, ventilation, and air conditioning system having improved air warm-up
    • 加热,通风和空调系统具有改善的空气预热
    • US06669550B1
    • 2003-12-30
    • US10222099
    • 2002-08-16
    • Thomas Martin UrbankKarma Vir SangwanTaylor R. Eckstein, Jr.
    • Thomas Martin UrbankKarma Vir SangwanTaylor R. Eckstein, Jr.
    • B60H128
    • B60H1/00785B60H1/247
    • A HVAC system is operable in a fresh air mode and a recirculation mode for use in a vehicle is disclosed. The HVAC system includes a blower and a HVAC module in fluid communication with and downstream of the blower for warming and cooling the air to be circulated through the passenger compartment in both the fresh air mode and the recirculation mode. The HVAC module includes an inlet duct in fluid communication with and upstream of the blower and located above the dashboard for drawing air from the passenger compartment above the dashboard and through the blower and the HVAC module in the recirculation mode. The inlet duct above the dashboard improves air circulation within the passenger compartment that improves the air warm-up rate. The inlet duct above the dashboard also improves the airflow across a windshield to prevent fogging of the windshield.
    • HVAC系统在新鲜空气模式下可操作,并且公开了一种用于车辆的再循环模式。 HVAC系统包括与鼓风机流体连通的鼓风机和HVAC模块,用于在新鲜空气模式和再循环模式中使待循环通过乘客舱的空气升温和冷却。 HVAC模块包括与鼓风机流体连通并位于鼓风机上游的入口管道,并且位于仪表板上方,用于从仪表板上方的乘客舱抽取空气,并以再循环模式通过鼓风机和HVAC模块。 仪表板上方的入口管道改善了乘客舱内的空气循环,从而提高了空气预热速度。 仪表板上方的入口管道还改善了挡风玻璃上的气流,以防止挡风玻璃的起雾。