Patent · US9376971B2 · B2 · US
Energy management system and method for vehicle systems
- (11) Publication number
- US9376971B2
- (21) Application number
- 14/696,124
- (22) Filing date
- 2015-04-24
- (30) Priority date
- 2006-03-20
- (43) Publication date
- 2016-06-28
- (45) Date of grant
- 2016-06-28
- (51) IPC
- B60W 30/188; F02D 29/02; B61L 27/00; B61L 3/00
- (52) CPC
- F02D Controlling combustion engines: 29/02
- B60W Conjoint control of vehicle sub-units of different type or different function; control systems specially adapted for hybrid vehicles; road vehicle drive control systems for purposes not related to the control of a particular sub-unit: 30/188
- B61L Guiding railway traffic; ensuring the safety of railway traffic: 15/0058, 15/0062, 27/0027, 27/16, 3/006, 3/008, 3/16
- G01C Measuring distances, levels or bearings; surveying; navigation; gyroscopic instruments; photogrammetry or videogrammetry: 21/3415
- (73) Assignee
- General Electric Co
- (72) Inventors
- Juli-Ann Luther; Jeffrey TWICHEL; Brian Nedward Meyer; Joseph Daniel WAKEMAN; Swapna Rameshbabu Gaikwad; John William Brand; James Brooks; David Allen Eldredge; Robert James Foy; Kevin Kapp; Ajith Kuttannair Kumar; William Martin; James Andrew Napolitano; Saravanan Thiyagarajan; Eric Vorndran
- (54) Title
- Energy management system and method for vehicle systems
- (57) Abstract
An energy management system and method for a vehicle system operate the vehicle system according to a current trip plan as the vehicle system travels along a route during a trip. The current trip plan designates operational settings of the vehicle system. The system and method also revise the current trip plan into a revised trip plan responsive to current, actual operation of the vehicle system differing from the current trip plan by at least a designated threshold amount. The revised trip plan designates operational settings of the vehicle system and includes an initial designated operational setting that matches the current, actual operation of the vehicle system.
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Claims (23)
- A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; revising the trip plan according to one or more of the requests based on the hierarchical order; comparing parameters of the requests that are received to identify a first optional request that corresponds to a first mandatory request; combining the first optional request and the first mandatory request into a combined request; and revising the first operational settings of the trip plan according to the combined request.
- The method of claim 1, wherein at least two of the plural requests are not mutually exclusive, and wherein the trip plan is revised using the at least two of the plural requests that are not mutually exclusive.
- The method of claim 1, wherein at least two of the plural requests are not mutually exclusive, whereby the revising the mission plan may be performed according to the at least some of the plural requests that are not mutually exclusive.
- The method of claim 1, wherein revising the trip plan includes changing the operational settings designated by the trip plan such that an initial designated operational setting of the trip plan that is revised matches a current, actual operation of the vehicle.
- The method of claim 4, wherein the current, actual operation of the vehicle differs from the trip plan during a time period that the initial designated operational setting of the revised trip plan is scheduled to be implemented by the vehicle.
- The method of claim 1, wherein revising the trip plan includes designating second operational settings of the vehicle as a function of one or more of time or distance along the route, the second operational settings differing from the first operational settings, wherein the second operational settings include an initial designated operational setting that matches a current, actual operation of the vehicle at a time when the trip plan that is revised is implemented.
- The method of claim 6, wherein the current, actual operation of the vehicle differs from the trip plan during a time period that the initial designated operational setting of the revised trip plan is scheduled to be implemented by the vehicle.
- The method of claim 6, further comprising determining the current, actual operation of the vehicle system based on one or more models of the vehicle system.
- The method of claim 1, wherein the vehicle is a rail vehicle.
- A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; revising the trip plan according to one or more of the requests based on the hierarchical order; and operating the vehicle according to the operational settings designated by the trip plan that is revised, wherein operating the vehicle according to the trip plan that is revised causes the vehicle system to one or more of consume more fuel or generate increased emissions relative to the vehicle operating according to the operational settings designated by the trip plan prior to revising the trip plan, but also causes the vehicle to one or more of consume less fuel or generate fewer emissions relative to the vehicle returning to operating according to the operational settings designated by the trip plan prior to revising the trip plan.
- The method of claim 10, wherein the vehicle is a rail vehicle.
- A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; and revising the trip plan according to one or more of the requests based on the hierarchical order; wherein receiving the plural requests includes receiving plural different estimation re-plan requests, the estimation re-plan requests based on one or more differences between one or more expected values and one or more experienced values of a parameter used to previously generate the trip plan; and arbitrating between the estimation re-plan requests based on a state of the vehicle; and generating an arbitrated re-plan request based on arbitrating between the estimation re-plan requests, wherein the trip plan is revised according to the arbitrated re-plan request.
- The method of claim 12, wherein the vehicle is a rail vehicle.
- A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; and revising the trip plan according to one or more of the requests based on the hierarchical order; wherein revising the trip plan includes: generating a transition plan that designates one or more second operational settings of the vehicle that differ from the first operational settings prior to an approaching location along the route, wherein the transition plan designates the second operational settings of the vehicle for a limited distance that is shorter than a remainder of a distance for which the trip plan was generated; and generating a prospective plan that designates one or more third operational settings of the vehicle that differ from the first and second operational settings as a function of one or more of time or distance along the route as the vehicle system at least one of moves past the approaching location or completes the transition plan, wherein the prospective plan designates the one or more third operational settings at least until an end point of the distance for which the operating plan was generated.
- The method of claim 14, wherein generating the prospective plan occurs and is completed while the vehicle is being controlled according to the transition plan.
- The method of claim 14, wherein generating the prospective plan includes basing the prospective plan on fuel usage while the transition plan is not based on fuel usage.
- The method of claim 14, further comprising receiving an input request as the deviation, the input request including an instruction to change the route being traveled by the vehicle in contradiction to the trip plan.
- The method of claim 14, wherein the vehicle is a rail vehicle.
- A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; revising the trip plan according to one or more of the requests based on the hierarchical order, wherein revising the trip plan includes designating second operational settings of the vehicle as a function of one or more of time or distance along the route, the second operational settings differing from the first operational settings, wherein the second operational settings include an initial designated operational setting that matches a current, actual operation of the vehicle at a time when the trip plan that is revised is implemented; and operating the vehicle according to the second operational settings designated by the trip plan that is revised, wherein operating the vehicle according to the trip plan that is revised causes the vehicle to one or more of consume more fuel or generate increased emissions relative to the vehicle operating according to the first operational settings designated by the trip plan prior to revising the trip plan, but also causes the vehicle to one or more of consume less fuel or generate fewer emissions relative to the vehicle returning to operating according to the first operational settings designated by the trip plan prior to revising the trip plan.
- The method of claim 19, wherein the vehicle is a rail vehicle.
- A system comprising one or more processors configured to: determine signals for controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route, receive plural requests to revise the trip plan as the vehicle moves along the route, classify individual requests based on a determined necessity of the requests, determine a hierarchical order of the requests based on the determined necessity of the requests, revise the trip plan according to one or more of the requests based on the hierarchical order, compare parameters of the requests that are received to identify a first optional request that corresponds to a first mandatory request, combine the first optional request and the first mandatory request into a combined request, and revise the first operational settings of the trip plan according to the combined request.
- The system of claim 21, wherein at least two of the plural requests are not mutually exclusive, and wherein the one or more processors are configured to revise the trip plan using the at least two of the plural requests that are not mutually exclusive.
- The system of claim 21, the vehicle is a rail vehicle.
Description
Embodiments of the subject matter disclosed herein relate to determining operational settings of vehicle systems for travel along one or more routes.
Some powered systems such as, but not limited to, off-highway vehicles, marine diesel powered propulsion plants, stationary powered system, transport vehicles such as transport buses, agricultural vehicles, and rail vehicle systems or trains, are typically powered by one or more power units, or power generating units. With respect to rail vehicle systems, a power unit is usually a part of at least one locomotive powered by at least one internal combustion engine and the train further includes a plurality of rail cars, such as freight cars. Usually more than one locomotive is provided wherein the locomotives are considered a locomotive consist. Locomotives are complex systems with numerous subsystems, with each subsystem being interdependent on other subsystems.
An operator is usually aboard a locomotive to insure the proper operation of the locomotive, and when there is a locomotive consist, the operator is usually aboard a lead locomotive. A locomotive consist is a group of locomotives that operate together in operating a train. In addition to ensuring proper operations of the locomotive, or locomotive consist, the operator also is responsible for determining operating speeds of the train and forces within the train that the locomotives are part of To perform this function, the operator generally must have extensive experience with operating the locomotive and various trains over the specified terrain.
Citations (12)
- US5928294A
- US20040034556A1
- US6427114B1
- US20030060968A1
- US20060074544A1
- US20050004723A1
- US20060235584A1
- US7734387B1
- US20070260367A1
- US8498762B2
- US7895135B2
- US8195364B2
Record as JSON
{
"publication_number": "US9376971B2",
"country": "US",
"kind": "B2",
"title": "Energy management system and method for vehicle systems",
"abstract": "An energy management system and method for a vehicle system operate the vehicle system according to a current trip plan as the vehicle system travels along a route during a trip. The current trip plan designates operational settings of the vehicle system. The system and method also revise the current trip plan into a revised trip plan responsive to current, actual operation of the vehicle system differing from the current trip plan by at least a designated threshold amount. The revised trip plan designates operational settings of the vehicle system and includes an initial designated operational setting that matches the current, actual operation of the vehicle system.",
"claims": [
"1. A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; revising the trip plan according to one or more of the requests based on the hierarchical order; comparing parameters of the requests that are received to identify a first optional request that corresponds to a first mandatory request; combining the first optional request and the first mandatory request into a combined request; and revising the first operational settings of the trip plan according to the combined request.",
"2. The method of claim 1, wherein at least two of the plural requests are not mutually exclusive, and wherein the trip plan is revised using the at least two of the plural requests that are not mutually exclusive.",
"3. The method of claim 1, wherein at least two of the plural requests are not mutually exclusive, whereby the revising the mission plan may be performed according to the at least some of the plural requests that are not mutually exclusive.",
"4. The method of claim 1, wherein revising the trip plan includes changing the operational settings designated by the trip plan such that an initial designated operational setting of the trip plan that is revised matches a current, actual operation of the vehicle.",
"5. The method of claim 4, wherein the current, actual operation of the vehicle differs from the trip plan during a time period that the initial designated operational setting of the revised trip plan is scheduled to be implemented by the vehicle.",
"6. The method of claim 1, wherein revising the trip plan includes designating second operational settings of the vehicle as a function of one or more of time or distance along the route, the second operational settings differing from the first operational settings, wherein the second operational settings include an initial designated operational setting that matches a current, actual operation of the vehicle at a time when the trip plan that is revised is implemented.",
"7. The method of claim 6, wherein the current, actual operation of the vehicle differs from the trip plan during a time period that the initial designated operational setting of the revised trip plan is scheduled to be implemented by the vehicle.",
"8. The method of claim 6, further comprising determining the current, actual operation of the vehicle system based on one or more models of the vehicle system.",
"9. The method of claim 1, wherein the vehicle is a rail vehicle.",
"10. A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; revising the trip plan according to one or more of the requests based on the hierarchical order; and operating the vehicle according to the operational settings designated by the trip plan that is revised, wherein operating the vehicle according to the trip plan that is revised causes the vehicle system to one or more of consume more fuel or generate increased emissions relative to the vehicle operating according to the operational settings designated by the trip plan prior to revising the trip plan, but also causes the vehicle to one or more of consume less fuel or generate fewer emissions relative to the vehicle returning to operating according to the operational settings designated by the trip plan prior to revising the trip plan.",
"11. The method of claim 10, wherein the vehicle is a rail vehicle.",
"12. A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; and revising the trip plan according to one or more of the requests based on the hierarchical order; wherein receiving the plural requests includes receiving plural different estimation re-plan requests, the estimation re-plan requests based on one or more differences between one or more expected values and one or more experienced values of a parameter used to previously generate the trip plan; and arbitrating between the estimation re-plan requests based on a state of the vehicle; and generating an arbitrated re-plan request based on arbitrating between the estimation re-plan requests, wherein the trip plan is revised according to the arbitrated re-plan request.",
"13. The method of claim 12, wherein the vehicle is a rail vehicle.",
"14. A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; and revising the trip plan according to one or more of the requests based on the hierarchical order; wherein revising the trip plan includes: generating a transition plan that designates one or more second operational settings of the vehicle that differ from the first operational settings prior to an approaching location along the route, wherein the transition plan designates the second operational settings of the vehicle for a limited distance that is shorter than a remainder of a distance for which the trip plan was generated; and generating a prospective plan that designates one or more third operational settings of the vehicle that differ from the first and second operational settings as a function of one or more of time or distance along the route as the vehicle system at least one of moves past the approaching location or completes the transition plan, wherein the prospective plan designates the one or more third operational settings at least until an end point of the distance for which the operating plan was generated.",
"15. The method of claim 14, wherein generating the prospective plan occurs and is completed while the vehicle is being controlled according to the transition plan.",
"16. The method of claim 14, wherein generating the prospective plan includes basing the prospective plan on fuel usage while the transition plan is not based on fuel usage.",
"17. The method of claim 14, further comprising receiving an input request as the deviation, the input request including an instruction to change the route being traveled by the vehicle in contradiction to the trip plan.",
"18. The method of claim 14, wherein the vehicle is a rail vehicle.",
"19. A method comprising: controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route; receiving plural requests to revise the trip plan as the vehicle moves along the route; classifying individual requests based on a determined necessity of the requests; determining a hierarchical order of the requests based on the determined necessity of the requests; revising the trip plan according to one or more of the requests based on the hierarchical order, wherein revising the trip plan includes designating second operational settings of the vehicle as a function of one or more of time or distance along the route, the second operational settings differing from the first operational settings, wherein the second operational settings include an initial designated operational setting that matches a current, actual operation of the vehicle at a time when the trip plan that is revised is implemented; and operating the vehicle according to the second operational settings designated by the trip plan that is revised, wherein operating the vehicle according to the trip plan that is revised causes the vehicle to one or more of consume more fuel or generate increased emissions relative to the vehicle operating according to the first operational settings designated by the trip plan prior to revising the trip plan, but also causes the vehicle to one or more of consume less fuel or generate fewer emissions relative to the vehicle returning to operating according to the first operational settings designated by the trip plan prior to revising the trip plan.",
"20. The method of claim 19, wherein the vehicle is a rail vehicle.",
"21. A system comprising one or more processors configured to: determine signals for controlling a vehicle to travel along a route according to a trip plan that designates first operational settings of the vehicle as a function of one or more of time or distance along the route as the vehicle moves along the route, receive plural requests to revise the trip plan as the vehicle moves along the route, classify individual requests based on a determined necessity of the requests, determine a hierarchical order of the requests based on the determined necessity of the requests, revise the trip plan according to one or more of the requests based on the hierarchical order, compare parameters of the requests that are received to identify a first optional request that corresponds to a first mandatory request, combine the first optional request and the first mandatory request into a combined request, and revise the first operational settings of the trip plan according to the combined request.",
"22. The system of claim 21, wherein at least two of the plural requests are not mutually exclusive, and wherein the one or more processors are configured to revise the trip plan using the at least two of the plural requests that are not mutually exclusive.",
"23. The system of claim 21, the vehicle is a rail vehicle."
],
"description_excerpt": "Embodiments of the subject matter disclosed herein relate to determining operational settings of vehicle systems for travel along one or more routes.\n\nSome powered systems such as, but not limited to, off-highway vehicles, marine diesel powered propulsion plants, stationary powered system, transport vehicles such as transport buses, agricultural vehicles, and rail vehicle systems or trains, are typically powered by one or more power units, or power generating units. With respect to rail vehicle systems, a power unit is usually a part of at least one locomotive powered by at least one internal combustion engine and the train further includes a plurality of rail cars, such as freight cars. Usually more than one locomotive is provided wherein the locomotives are considered a locomotive consist. Locomotives are complex systems with numerous subsystems, with each subsystem being interdependent on other subsystems.\n\nAn operator is usually aboard a locomotive to insure the proper operation of the locomotive, and when there is a locomotive consist, the operator is usually aboard a lead locomotive. A locomotive consist is a group of locomotives that operate together in operating a train. In addition to ensuring proper operations of the locomotive, or locomotive consist, the operator also is responsible for determining operating speeds of the train and forces within the train that the locomotives are part of To perform this function, the operator generally must have extensive experience with operating the locomotive and various trains over the specified terrain.",
"cpc": [
"F02D 29/02",
"B60W 30/188",
"B61L 15/0058",
"B61L 15/0062",
"B61L 27/0027",
"B61L 27/16",
"B61L 3/006",
"B61L 3/008",
"B61L 3/16",
"G01C 21/3415"
],
"ipc": [
"B60W 30/188",
"F02D 29/02",
"B61L 27/00",
"B61L 3/00"
],
"assignees": [
"General Electric Co"
],
"inventors": [
"Juli-Ann Luther",
"Jeffrey TWICHEL",
"Brian Nedward Meyer",
"Joseph Daniel WAKEMAN",
"Swapna Rameshbabu Gaikwad",
"John William Brand",
"James Brooks",
"David Allen Eldredge",
"Robert James Foy",
"Kevin Kapp",
"Ajith Kuttannair Kumar",
"William Martin",
"James Andrew Napolitano",
"Saravanan Thiyagarajan",
"Eric Vorndran"
],
"filing_date": "2015-04-24",
"publication_date": "2016-06-28",
"grant_date": "2016-06-28",
"priority_date": "2006-03-20",
"application_number": "US-201514696124-A",
"family_id": "53797398",
"cited_by_count": 65,
"citations": [
"US5928294A",
"US20040034556A1",
"US6427114B1",
"US20030060968A1",
"US20060074544A1",
"US20050004723A1",
"US20060235584A1",
"US7734387B1",
"US20070260367A1",
"US8498762B2",
"US7895135B2",
"US8195364B2"
]
}
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