Motor and drive arrangement for refrigeration system
US-2016252289-A1 · Sep 1, 2016 · US
US10875497B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10875497-B2 |
| Application number | US-201816176667-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 31, 2018 |
| Priority date | Oct 31, 2018 |
| Publication date | Dec 29, 2020 |
| Grant date | Dec 29, 2020 |
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A method for preventing drive off of a refrigerated transport unit includes detecting whether an electrical power system of the refrigerated transport unit is electrically connected to a utility power source, and performing an action when the electrical power system is electrically connected to the utility power source includes. A drive off protection system includes a refrigerated transport unit including an electrical power system and a controller that monitors the electrical power system. The controller configured to perform an action when the electrical power system is electrically connected to the refrigerated transport unit.
Opening claim text (preview).
What is claimed is: 1. A method for preventing drive off of a refrigerated transport unit, the refrigerated transport unit including a transport unit having an internal space for storing cargo and a transport climate control system to control an environmental condition of the internal space, the method comprising: detecting whether an electrical power system of the refrigerated transport unit is electrically connected to a utility power source, the electrical power system configured to provide power to the transport climate control system; and performing an action when the electrical power system is electrically connected to the utility power source, which includes: generating, when the electrical power system is electrically connected to the utility power source, an instruction to prevent movement of the refrigerated transport unit while the electrical power system is electrically connected to the utility power source. 2. The method of claim 1 , wherein performing an action when the electrical power system is electrically connected to the utility power source includes: activating a breaking system of the transport unit while the electrical power system is electrically connected to the utility power source, the activated breaking system configured to prevent rotation of the wheels of the transport unit. 3. The method of claim 1 , wherein performing an action when the electrical power system is electrically connected to the utility power source includes: communicating the instruction to a tow vehicle when the tow vehicle is attached to the refrigerated transport unit, the instruction configured to prevent the movement of the tow vehicle while the electrical power system of the refrigerated transport unit is electrically connected to the utility power source. 4. The method of claim 3 , wherein the tow vehicle includes wheels and a braking system to prevent rotation of the wheels, and the method further including: activating, based on the instruction to prevent movement of the refrigerated transport unit, the braking system to prevent movement of the tow vehicle while the electrical power system of the refrigerated transport unit is electrically connected to the utility power source. 5. The method claim 3 , wherein the tow vehicle includes a prime mover for moving the tow vehicle along the ground, and the method further including: preventing, based on the instruction to prevent movement of the refrigerated transport unit, the prime mover from providing movement to the tow vehicle while the electrical power system of the refrigerated transport unit is electrically connected to the utility power source. 6. A method for preventing drive off of a refrigerated transport unit, the refrigerated transport unit including a transport unit having an internal space for storing cargo and a transport climate control system to control an environmental condition of the internal space, the method comprising: detecting whether an electrical power system of the refrigerated transport unit is electrically connected to a utility power source, the electrical power system configured to provide power to the transport climate control system; and generating, when the electrical power system is electrically connected to the utility power source, an instruction to prevent movement of the refrigerated transport unit while the electrical power system is electrically connected to the utility power source; communicating the instruction to a docking port including an attachment arm for physically restraining the transport unit; and preventing, based on the instruction to prevent movement of the refrigerated transport unit, the attachment arm from being disengaged from the transport unit while the electrical power system is electrically connected to the utility power source. 7. The method of claim 3 , further comprising: determining a charge of a battery pack of the transport refrigeration unit, the battery pack configured to supply electrical power to the transport climate control system for controlling the environmental condition of the interior space; and generating the instruction when a charge of the battery pack is below a predetermined amount and the electrical power system is electrically connected to the utility power source. 8. The method of claim 3 , further comprising: communicating the instruction from the first transport refrigeration unit to a second transport refrigeration unit; and preventing movement of the first transport refrigeration unit and the second transport refrigeration unit with the instruction to prevent movement of the first transport refrigeration unit. 9. The method of claim 1 , wherein generating the instruction to prevent movement of the transport refrigeration unit while the electrical power system is electrically connected to the utility power source includes: generating a first instruction to prevent movement of the transport refrigeration unit when the electrical power system is electrically connected to the utility power source, and generating a second instruction to stop preventing movement of the transport refrigeration unit when the electrical power system is no longer electrically connected to the utility power source. 10. The method of claim 1 , wherein performing an action when the electrical power system is electrically connected to the utility power source includes: producing, a visual warning when the refrigerated transport unit is moved while the electrical power system is electrically connected to the utility power source. 11. The method of claim 10 , wherein the visual warning is produced by a warning light disposed within a tow vehicle attached to the refrigerated transport unit. 12. The method of claim 1 , wherein performing an action when the electrical power system is electrically connected to the utility power source includes: producing an audible warning via a speaker when a tow vehicle attempts to move the transport refrigeration unit while the electrical power system is electrically connected to the utility power source. 13. The method claim 1 , wherein performing an action when the electrical power system is electrically connected to the utility power source includes: reporting, via a telematics unit, movement of the refrigerated transport unit that occurred while the electrical power system was electrically connected to the utility power source. 14. A drive off protection system comprising: a refrigerated transport unit including: a transport unit including an internal space for storing cargo, a transport climate control system configured to control an environmental condition of the internal space, an electric power system configured to receive external electrical power from a utility power source and provide electrical power to the transport climate control system, and a controller monitoring the electrical power system, the controller configured to generate an instruction when the electrical power system is electrically connected to the utility power source, and the instruction configured to prevent movement of the refrigerated transport unit while the electrical power system is electrically connected to the utility power source. 15. The drive off protection system of claim 14 , wherein the electrical power system includes a socket for receiving the external electrical power from the utility power source, and the controller detects a current supplied from the socket to determine whether the electrical power system is electrically connected to the utility power source. 16. The drive off protection system of claim 14 , wherein the electric
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