Claims
- 1. A method for selecting a detection bandwidth centered about a center wavelength for at least one constituent of a vehicle emission, said method comprising the steps of:(a) determining a constituent characteristic wavelength of at least one constituent of the vehicle's emission to be detected; (b) determining a bandwidth about the constituent characteristic wavelength within which said at least one constituent absorbs radiation; (c) determining one or more contaminants which may be encountered by radiation employed to detect said at least one constituent in a vehicle emission plume; (d) determining a contaminant characteristic wavelength of said at least one contaminant; (e) determining a bandwidth about the contaminant characteristic wavelength of said at least one contaminant within which said at least one contaminant absorbs radiation; (f ) comparing the constituent characteristic wavelength and the contaminant characteristic wavelength and the bandwidth about the constituent characteristic wavelength of said at least one constituent and the bandwidth about the contaminant characteristic wavelength of said at least one contaminant; and (g) selecting a detection bandwidth based on said comparison in step (f) by shifting the center wavelength of the detection bandwidth away from the constituent characteristic wavelength and adjusting the size of the detection bandwidth.
- 2. A method according to claim 1, wherein the constituent to be detected is selected from the group consisting of hydrocarbon, carbon monoxide, carbon dioxide, and nitrogen oxides.
- 3. A method according to claim 1, the step (g) further comprises the step of shifting the center wavelength of the detection bandwidth away from the contaminant characteristic wavelength.
- 4. A method according to claim 1, the step (g) further comprises the step of adjusting the size of the detection bandwidth.
- 5. A method for selecting a radiation filter for detection of at least one constituent of a vehicle emission, said method comprising the steps of:(a) determining a constituent characteristic wavelength of at least one constituent of the vehicle's emission to be detected; (b) determining a bandwidth about the constituent characteristic wavelength within which said at least one constituent absorbs radiation; (c) determining one or more contaminants which may be encountered by radiation employed to detect said at least one constituent in a vehicle emission plume; (d) determining a contaminant characteristic wavelength of said at least one contaminant; (e) determining a bandwidth about the contaminant characteristic wavelength of said at least one contaminant within which said at least one contaminant absorbs radiation; (f ) comparing the constituent characteristic wavelength and the contaminant characteristic wavelength and the bandwidth about the constituent characteristic wavelength of said at least one constituent and the bandwidth about the contaminant characteristic wavelength of said at least one contaminant; (g) selecting a detection bandwidth based on said comparison in step (f) by shifting the center wavelength of the detection bandwidth away from the constituent characteristic wavelength and adjusting the size of the detection bandwidth; and (h) selecting a radiation filter which permits passage of radiation within the detection bandwidth and filters out substantially all other radiation.
- 6. A method according to claim 5, wherein the constituent to be detected is selected from the group consisting of hydrocarbon, carbon monoxide, carbon dioxide, and nitrogen oxides.
- 7. A method according to claim 5, the step (g) further comprises the step of shifting the center wavelength of the detection bandwidth away from the contaminant characteristic wavelength.
- 8. A method according to claim 5, the step (g) further comprises the step of adjusting the size of the detection bandwidth.
- 9. A method for detecting one or more constituents of a vehicle exhaust emission, said method comprising the steps of:(a) emitting radiation from a radiation source; (b) passing said radiation through a vehicle exhaust emission; (c) filtering said radiation which passed through said vehicle's exhaust emission with a radiation filter which is selected to permit a bandwidth centered about a center wavelength of 3.45 μm to pass through to a detector, said bandwidth being selected such that the center wavelength is a characteristic wavelength of a hydrocarbon to be detected and there is substantially no absorption of radiation within said selected bandwidth by one or more contaminants which may be encountered by said radiation; (d) detecting said filtered radiation; (e) determining the concentration of the the hydrocarbon within the vehicle's exhaust emission.
RELATED APPLICATION
This application claims priority based on U.S. Provisional Patent Application Ser. No. 60/110,195, entitled “Method and Apparatus for Selecting a Filter for a Remote Sensing Device,” filed Nov. 30, 1998.
US Referenced Citations (36)
Provisional Applications (1)
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Number |
Date |
Country |
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60/110195 |
Nov 1998 |
US |