Patent classifications
G01P3/26
HYBRID MEMS MICROFLUIDIC GYROSCOPE
A hybrid MEMS microfluidic gyroscope is disclosed. The hybrid MEMS microfluidic gyroscope may include a micro-machined base enclosure having a top fluid enclosure, a fluid sensing enclosure and a bottom fluid enclosure. The hybrid MEMS microfluidic gyroscope may include a plurality of cantilevers disposed within the bottom semi-circular portion of the micro-machined base enclosure or a single membrane disposed within the bottom semi-circular portion of the micro-machined base enclosure.
System and method for estimating turbocharger operating speed
A system and method are provided for estimating the operating speed of a turbocharger. A first pressure value corresponds to pressure at or near the air inlet of the compressor, and a second pressure value corresponds to pressure at or near the air outlet of the compressor. A temperature value corresponds to a temperature at or near the air inlet of the compressor, and a flow rate value corresponds to a flow rate of air entering the air inlet of the compressor. The operating speed of the turbocharger is estimated as a function of the first pressure value, the second pressure value, the temperature value and the flow rate value.
System and method for estimating turbocharger operating speed
A system and method are provided for estimating the operating speed of a turbocharger. A first pressure value corresponds to pressure at or near the air inlet of the compressor, and a second pressure value corresponds to pressure at or near the air outlet of the compressor. A temperature value corresponds to a temperature at or near the air inlet of the compressor, and a flow rate value corresponds to a flow rate of air entering the air inlet of the compressor. The operating speed of the turbocharger is estimated as a function of the first pressure value, the second pressure value, the temperature value and the flow rate value.
SYSTEM AND METHOD FOR ESTIMATING TURBOCHARGER OPERATING SPEED
A system and method are provided for estimating the operating speed of a turbocharger. A first pressure value corresponds to pressure at or near the air inlet of the compressor, and a second pressure value corresponds to pressure at or near the air outlet of the compressor. A temperature value corresponds to a temperature at or near the air inlet of the compressor, and a flow rate value corresponds to a flow rate of air entering the air inlet of the compressor. The operating speed of the turbocharger is estimated as a function of the first pressure value, the second pressure value, the temperature value and the flow rate value.
SYSTEM AND METHOD FOR ESTIMATING TURBOCHARGER OPERATING SPEED
A system and method are provided for estimating the operating speed of a turbocharger. A first pressure value corresponds to pressure at or near the air inlet of the compressor, and a second pressure value corresponds to pressure at or near the air outlet of the compressor. A temperature value corresponds to a temperature at or near the air inlet of the compressor, and a flow rate value corresponds to a flow rate of air entering the air inlet of the compressor. The operating speed of the turbocharger is estimated as a function of the first pressure value, the second pressure value, the temperature value and the flow rate value.
ROTATING SPEED DETERMINATION METHOD AND APPARATUS, AND COMPUTER-READABLE STORAGE MEDIUM
A rotating speed determination method and apparatus, and a computer-readable storage medium. The method includes: obtaining an ambient temperature and a high pressure at an outlet of a compression apparatus in a target device; and determining an operation rotating speed of a fan in the target device based on the ambient temperature and the high pressure, where the operation rotating speed satisfies a refrigeration requirement of the target device.
ROTATING SPEED DETERMINATION METHOD AND APPARATUS, AND COMPUTER-READABLE STORAGE MEDIUM
A rotating speed determination method and apparatus, and a computer-readable storage medium. The method includes: obtaining an ambient temperature and a high pressure at an outlet of a compression apparatus in a target device; and determining an operation rotating speed of a fan in the target device based on the ambient temperature and the high pressure, where the operation rotating speed satisfies a refrigeration requirement of the target device.