Sensing system and method

a hydrocarbon and system technology, applied in the direction of electric control, instruments, machines/engines, etc., can solve the problems of low gas selectivity, reduced gas selectivity, and inability to efficiently operate vehicles

Active Publication Date: 2018-08-16
GE GLOBAL SOURCING LLC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Benefits of technology

[0004]In one embodiment, a system includes an impedance gas sensor configured to be in contact with one or more hydrocarbons. The impedance sensor includes electrodes and a sensing region circuit that is configured to have a sensing material and to generate electrical stimuli to the sensing material upon exposure to one or more hydrocarbons at one or more of a reduced heater voltage or a reduced sensing region temperature as compared to a prescribed heater voltage or a prescribed sensing region temperature. The system also includes one or more processors configured to receive electrical signals from the sensor, where the electrical signals are representative of impedance responses of the sensing material to one or more hydrocarbons. The one or mo

Problems solved by technology

Some vehicles may consume natural gas to generate tractive effort and other electric power for propelling the vehicles.
Because the supply of natural gas to the propulsion systems may include impurities such as these heavier hydrocarbons, the vehicles may operate less efficiently at times. A need exists for a sensor that can detect the presence of one or more of these heavier hydrocarbons.
Conventional gas sensors f

Method used

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Embodiment Construction

[0024]One or more embodiments of the inventive subject matter described herein provide for sensing systems and methods that can sense and differentiate between different hydrocarbon-based components in a fuel or dispersed in ambient air. These sensing systems and methods may sense the presence and / or amount of methane and / or other, heavier hydrocarbons in a fuel supplied to a powered system, such as to a propulsion system (e.g., engine) of a vehicle. Also, these sensing systems and methods may sense the presence and / or amount of methane and / or other, heavier hydrocarbons in ambient air when emitted from different sources such as thermogenic or biogenic sources. The sensing systems and methods are unexpectedly sensitive to two or more different hydrocarbons relative to known sensing systems and methods while using only a single sensing device or sensor. Excitation conditions of the sensor are selected to provide selective quantitation of closely related gases, where the excitation co...

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Abstract

A system includes an impedance gas sensor configured to be in contact with one or more hydrocarbons. The impedance sensor includes electrodes and a sensing region circuit that is configured to have a sensing material and to generate electrical stimuli to the sensing material upon exposure to one or more hydrocarbons at one or more of a reduced heater voltage or a reduced sensing region temperature as compared to a prescribed heater voltage or a prescribed sensing region temperature. The system also includes one or more processors configured to receive electrical signals from the sensor, where the electrical signals are representative of impedance responses of the sensing material to one or more hydrocarbons. The one or more processors also are configured to analyze the impedance responses and determine an amount of at least one hydrocarbon of interest in the one or more hydrocarbons.

Description

FIELD[0001]One or more embodiments are disclosed that relate to systems and methods for sensing hydrocarbons.BACKGROUND[0002]Powered systems, such as vehicles, can be powered by consumption of hydrocarbon-based fuels. Some vehicles may consume natural gas to generate tractive effort and other electric power for propelling the vehicles. The propulsion systems of such vehicles may operate more efficiently (e.g., generate or produce more work per unit of fuel) when the natural gas supply to the propulsion systems includes or is formed from methane as opposed to other heavier hydrocarbons, such as ethane, butane, etc. Because the supply of natural gas to the propulsion systems may include impurities such as these heavier hydrocarbons, the vehicles may operate less efficiently at times. A need exists for a sensor that can detect the presence of one or more of these heavier hydrocarbons.[0003]Conventional gas sensors for hydrocarbons, however, are non-selective devices exhibiting signific...

Claims

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Application Information

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IPC IPC(8): G01N27/12F02D41/00F02D41/26
CPCG01N27/125F02D2200/0611F02D41/26F02D41/0027F02D19/029F02M21/0212G01N27/026G01N33/0047Y02T10/30
Inventor POTYRAILO, RADISLAV ALEXANDROVICHOTTIKKUTTI, PRADHEEPRAMKUZHIYIL, NAJEEB
Owner GE GLOBAL SOURCING LLC
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