System and method for monitoring agricultural product delivery
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
G01F-001/30
출원번호
US-0415352
(2012-03-08)
등록번호
US-8869629
(2014-10-28)
발명자
/ 주소
Noble, Scott David
Pastl, David Matthew
출원인 / 주소
CNH Industrial Canada, Ltd.
대리인 / 주소
Henkel, Rebecca L.
인용정보
피인용 횟수 :
0인용 특허 :
19
초록▼
An agricultural product delivery system includes a conduit. The conduit of the agricultural product delivery system is configured to enable agricultural product to pass therethrough. The agricultural product delivery system also includes a first electrostatic sensor coupled to the conduit, and confi
An agricultural product delivery system includes a conduit. The conduit of the agricultural product delivery system is configured to enable agricultural product to pass therethrough. The agricultural product delivery system also includes a first electrostatic sensor coupled to the conduit, and configured to detect the agricultural product passing through the conduit.
대표청구항▼
1. An agricultural product delivery system comprising: a conduit configured to enable a particulate agricultural product to pass therethrough; anda first electrostatic sensor coupled to a first axial location of the conduit, and configured to detect particles of the particulate agricultural product
1. An agricultural product delivery system comprising: a conduit configured to enable a particulate agricultural product to pass therethrough; anda first electrostatic sensor coupled to a first axial location of the conduit, and configured to detect particles of the particulate agricultural product passing through the conduit and to output a signal indicative of a quantity of the particles of the particulate agricultural product passing through the conduit, wherein the first electrostatic sensor comprises an electrically conductive ring that extends continuously about a periphery of the conduit. 2. The agricultural product delivery system of claim 1, wherein the first electrostatic sensor is disposed about an exterior surface of the conduit. 3. The agricultural product delivery system of claim 1, comprising a shielding material disposed about the first electrostatic sensor to reduce electromagnetic interference with the first electrostatic sensor. 4. The agricultural product delivery system of claim 1, comprising sensor monitoring circuitry electrically coupled to the first electrostatic sensor, the sensor monitoring circuitry configured to amplify the signal output by the first electrostatic sensor. 5. The agricultural product delivery system of claim 4, comprising control circuitry electrically coupled to the sensor monitoring circuitry, and configured to receive the amplified signal from the sensor monitoring circuitry and to determine the quantity of the particles based on the amplified signal. 6. The agricultural product delivery system of claim 1, comprising a second electrostatic sensor coupled to a second axial location of the conduit, and configured to detect the particles of the particulate agricultural product passing through the conduit. 7. The agricultural product delivery system of claim 6, comprising control circuitry electrically coupled to the first electrostatic sensor and to the second electrostatic sensor, the control circuitry configured to determine a speed of the particles of the particulate agricultural product passing through the conduit via signals output from the first electrostatic sensor and the second electrostatic sensor. 8. A method for monitoring agricultural product passing through a conduit of an agricultural product delivery system comprising: receiving a first signal from a first electrostatic sensor indicative of the agricultural product passing through the conduit of the agricultural product delivery system;measuring at least one flow property of the agricultural product based on the first signal, wherein measuring the at least one flow property comprises counting a number of times a magnitude of the first signal increases above a threshold value; andreceiving a second signal from a second electrostatic sensor positioned at an axial location different from the first electrostatic sensor, wherein the second signal is indicative of the agricultural product passing through the conduit of the agricultural product delivery system, and measuring the at least one flow property comprises determining a speed of the agricultural product based on the first signal and the second signal. 9. The method of claim 8, wherein measuring the at least one flow property comprises filtering the first signal to reduce noise. 10. The method of claim 8, wherein the at least one flow property comprises a quantity of the agricultural product passing through the conduit of the agricultural product delivery system. 11. An agricultural product delivery system comprising: a first electrostatic sensor configured to couple to a conduit to detect particles of a particulate agricultural product passing through the conduit;sensor monitoring circuitry electrically coupled to the first electrostatic sensor, the sensor monitoring circuitry configured to amplify first signals output by the first electrostatic sensor; andcontrol circuitry electrically coupled to the sensor monitoring circuitry, and configured to receive the amplified first signals from the sensor monitoring circuitry, and to determine a quantity of the particles of the particulate agricultural product passing through the conduit, wherein the electrostatic sensor comprises an electrically conductive ring that extends continuously about a periphery of the conduit. 12. The agricultural product delivery system of claim 11, wherein the control circuitry is configured to adjust a delivery rate of the agricultural product based on the determined quantity of the particles of the particulate agricultural product passing through the conduit. 13. The agricultural product delivery system of claim 11, wherein the first signals output by the first electrostatic sensor comprise an electrical current signal, the sensor monitoring circuitry comprises a charge amplifier to convert the electrical current signal to an electrical voltage signal, and the sensor monitoring circuitry comprises an amplifying device to amplify the electrical voltage signal. 14. The agricultural product delivery system of claim 13, wherein the amplifying device comprises an adjustable gain. 15. The agricultural product delivery system of claim 1, comprising control circuitry configured to identify a blockage within the conduit based on cessation of the particles passing through the conduit. 16. The agricultural product delivery system of claim 1, comprising control circuitry configured to determine the quantity of the particles of the particulate agricultural product passing through the conduit based on the signal, and wherein determining the quantity of the particles comprises counting a number of times a magnitude of the signal exceeds a threshold value. 17. The agricultural product delivery system of claim 11, wherein the control circuitry is configured to determine the quantity of the particles by counting a number of times a magnitude of the amplified signals exceeds a threshold value. 18. The agricultural product delivery system of claim 1, comprising control circuitry configured to determine the quantity of the particles of the particulate agricultural product passing through the conduit based on the signal, wherein determining the quantity of the particles comprises locating individual waveforms corresponding to the particles passing through the conduit of the agricultural product delivery system. 19. The agricultural product delivery system of claim 17, wherein the electrostatic sensor comprises an electrically conductive ring that extends continuously about a periphery of the conduit. 20. The agricultural product delivery system of claim 11, comprising a second electrostatic sensor axially spaced apart from the first electrostatic sensor and configured to output second signals indicative of the agricultural product passing through the conduit of the agricultural product delivery system, wherein the control circuitry is configured to determine a speed of the agricultural product based on the first signals and the second signals. 21. The agricultural product delivery system of claim 11, wherein the control circuitry is configured to determine the quantity of the particles by locating individual waveforms corresponding to the particles passing through the conduit of the agricultural product delivery system.
연구과제 타임라인
LOADING...
LOADING...
LOADING...
LOADING...
LOADING...
이 특허에 인용된 특허 (19)
Beattie Alan G. (Corrales NM) Bohon W. Mark (Frisco TX), Acoustic sand detector for fluid flowstreams.
Bottinger Stefan (Bielefeld DEX) Weigelt Horst (Gutersloh DEX) Horn Klaus (Brunswick DEX) Yang Weiping (Duisburg DEX), Mass flow rate measuring device with dual electrodes.
Harumoto Kimura (Hirakata JPX) Toyoaki Tanigawa (Takatsuki JPX), Method for transporting powdered or granular materials by pneumatic force with a transport pipe of smaller diameter rela.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.