GALLEY CART WITH SELECTABLE MEAL PREPARATION
20200108932 ยท 2020-04-09
Inventors
- Cynthia A. Vandewall (Snohomish, WA, US)
- Alberto de Icaza Mura (Cincinnati, OH, US)
- Kirsten M. McIntyre (Miamisburg, OH, US)
- Leigh Ann Popik (Twinsburg, OH, US)
- Ryan J. Reese (Cincinnati, OH, US)
- Joseph B. Lane (Cincinnati, OH, US)
- Craig Vogel (Cincinnati, OH, US)
Cpc classification
B64D11/0007
PERFORMING OPERATIONS; TRANSPORTING
F25D17/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B64D13/08
PERFORMING OPERATIONS; TRANSPORTING
F25D17/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B64D11/00
PERFORMING OPERATIONS; TRANSPORTING
F25D17/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D17/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A storage and preparation system for food or beverages employs a galley cart with a plurality of compartments. A container receivable in one of the plurality of compartments. The container has an identifier. A sensor is in each of said plurality of compartments and is adapted to read the identifier. An environmental system responsive to the sensor is associated with each of said plurality of compartments.
Claims
1. A storage and preparation system for food or beverages, the system comprising: a galley cart having a plurality of compartments; a container receivable in one of said plurality of compartments, said container having an identifier; a sensor in each of said plurality of compartments, said sensor adapted to read the identifier; and an environmental system responsive to output of the sensor associated with each of said plurality of compartments.
2. The storage and preparation system as defined in claim 1 wherein the identifier is a physical device comprising a QR code, an RFID tag, or a bar code.
3. The storage and preparation system as defined in claim 1 wherein the environmental system comprises a heating unit, a chiller, or a combined heater and chiller.
4. The storage and preparation system as defined in claim 3 wherein the identifier is associated with data specifying a time and temperature sequence.
5. The storage and preparation system as defined in claim 4 further comprising: a timer; and a controller connected to the sensor and the timer, said controller issuing one or more command signals to the environmental system responsive to the time and temperature sequence data associated with the identifier.
6. The storage and preparation system as defined in claim 5 wherein in the controller issues a storage command to the environmental system responsive to a first time period output from the timer.
7. The storage and preparation system as defined in claim 6 wherein the controller issues a preparation command to the environmental system responsive to a second time period output from the timer.
8. The storage and preparation system as defined in claim 5 wherein the identifier is associated with data corresponding to an entre description and further comprising a display responsive to the controller and displaying a least one of entre description and preparation status.
9. The storage and preparation system as defined in claim 8 wherein the entre description includes a passenger identification and the display is responsive to the controller to display the passenger identification.
10. The storage and preparation system as defined in claim 8 wherein the controller issues a preparation complete message to the display.
11. A method for storage and preparation of food or beverages, the method comprising: inserting a container having an identifier into a compartment in a galley cart; reading the identifier with a sensor in the compartment; and controlling an environmental system associated with the compartment responsive to data read from the identifier.
12. The method as defined in claim 11 wherein the step of controlling comprises heating the container to a temperature defined in the data at a warm up time defined in the data.
13. The method as defined in claim 12 wherein the step of controlling further comprises cooling the container until the warm up time is reached.
14. The method as defined in claim 13 wherein the step of controlling further comprises: receiving the data read from the identifier in a controller; monitoring a timer with the controller; and issuing a preparation command from the controller to initiate heating of the container upon reaching the warm up time.
15. The method as defined in claim 14 wherein the step of controlling further comprises issuing a storage command from the controller to maintain cooling of the container until reaching the warm up time.
16. The method as defined in claim 14 wherein the step of controlling further comprises issuing a preparation complete signal from the controller to a display.
17. The method as defined in claim 16 wherein the step of controlling further comprises presenting passenger identification for the container on the display.
18. The method as defined in claim 11 further comprising loading the galley cart into an aircraft galley.
19. The method as defined in claim 18 further comprising connecting the galley cart to the aircraft galley to provide power to the environmental system, a controller, and a display.
20. The method as defined in claim 11 further comprising: receiving a food order from a passenger; storing data for the food order in an identifier; and attaching the identifier to the container.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0005] The features, functions, and advantages of the anti-personnel autonomous vehicle can be achieved independently in various implementations of the present disclosure or may be combined in yet other implementations further details of which can be seen with reference to the following description and drawings.
[0006]
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DETAILED DESCRIPTION
[0013] Implementations disclosed herein provide a system and method for food storage and preparation employed in transportable galley carts. The galley cart has a plurality of compartments that receive containers having prepackaged entres. The container for the entre includes an identifier that is read by a sensor in the compartment into which the container is inserted. An environmental system associated with each compartment then processes the entre responsive to the information contained by the identifier.
[0014] Referring to the drawings,
[0015] The identifier 16 may be a Quick Response (QR) code or a bar code, that is printed on the container 14 or printed on a label that is then attached to the container 14. The identifier 16 can additionally or alternatively be an encodeable element, such as a Radio Frequency Identification (RFID) tag, remotely encoded while present in the container 14 or encoded and then inserted into the container 14. The entre may be prepared and inserted in the container 14 based on an order from a passenger, as will be described in greater detail subsequently. Data regarding the entree including, for example, an entree name or type, a storage temperature and a heating time and/or temperature is determined and embedded in the data to be included in the identifier 16. Data regarding the ordering passenger, including flight or transportation information, source of the entre, and desired service time may also be included. The identifier 16, if a QR code or bar code, is then printed on the container 14 or a label to be attached to the container, in a specified location to align with the sensor 18 when the container 14 is inserted in the compartment 12. If an RFID tag is employed as the identifier 16 the data may be transmitted to be embedded in the RFID tag.
[0016] An implementation of the galley cart 10 is shown in
[0017] Individual compartment doors 40 are employed in the exemplary embodiment for separate access to each compartment 12 (shown in the drawings with the door 40 of the first compartment 12 partially open, doors for the second through sixth compartments removed for clarity of interior details, and doors 40 for the 7.sup.th through 10.sup.th compartments closed). A single door on the front of the galley cart 10 or dual doors for each compartment 12 on both the front and back of the galley cart 10 may be employed for ease of access by the attendant. The sensor 18 is mounted on an interior wall 42 in each compartment 12. For use with QR code or bar code identifiers 16, the sensor 18 is a laser scanning unit. For use with RFID tag identifiers 16, an RFID sensor 18 is employed. Each compartment 12 may have multiple sensor types to accommodate containers 14 having various types of identifiers 16.
[0018] In one exemplary implementation as seen in
[0019] In alternative embodiments as seen in
[0020] Temperature control of each of the compartments 12 is accomplished by the controller 20 as shown in
[0021] Upon reaching a predetermined preparation time as determined by the timing module 102 based on the data 17 and the time data from the timer 22, the controller 20 issues a preparation command 108 through the environmental system control module 106 to the heating unit 46 (or valves 55 associated with the heating unit) to heat the compartment 12 for a second defined time period and container 14 to the desired temperature. The time and temperature sequence 100 defined in the data 17 may provide a heating time interval required for appropriate heating of the container 14 or may merely provide the desired service time and the controller 20 may calculate the heating time interval based on entre type and capacity of the heating unit 46 in a calculation module 110.
[0022] The controller 20 incorporates a display module 60 to provide data to a display 62 regarding preparation status of the container 14 in each compartment 12 for viewing by the attendant. The display module 60 may also issue a preparation complete message when the desired service time or temperature has been reached. For a room temperature entre in the container 14, the desired service time may be the sole display output. The display 62 may be integrated into the galley cart 10, as seen in
[0023] The timer 22 or controller 20 may incorporate a delay module 112 controllable by the attendant to input a delay time, for example if the service time needs to be delayed based on a flight delay, for the timing sequence from the identifier 16 received in the data 17.
[0024] As seen in
[0025] The implementations disclosed provide a method 700 for food storage and preparation as shown in
[0026] The controller 20 monitors a timer 22 to determine if a warm up time has been reached, step 715. If not, the controller 20 issues a storage command 104, step 716, to cool the compartment 12 in which the container 14 has been placed with the environmental system 24 until a warm up time defined by the data 17 in the identifier 16 is reached, step 717. When the warm up time is reached, the controller 20 issues a preparation command 108, step 718, to initiate heating of the compartment 12 with the environmental system 24 such that the container 14 is heated to a temperature defined in the data 17, step 719. A preparation complete signal is then issued from the controller to the display 62, step 720. Passenger identification for the container 14 may be issued by the controller 20 for presentation on the display, step 722.
[0027] Having now described various implementations of the disclosure in detail as required by the patent statutes, those skilled in the art will recognize modifications and substitutions to the specific implementations disclosed herein. Such modifications are within the scope and intent of the present disclosure as defined in the following claims.