IP Library Granted Patent US 11,850,914
Granted Patent B2
US 11,850,914 · App. 17/326,439 · Granted Dec 26, 2023

Methods and systems of conveying data to and from a transport climate control system

Inventors: Christos Alkiviadis Polyzois (Bloomington, MN); Wendy K. Foslien (Woodbury, MN); Hardeep Singh (Minneapolis, MN); Grant Ovsak (Hopkins, MN); Matthew Srnec (Minnetonka, MN); Travis Lumpkin (Minneapolis, MN); George Wallace Malheiros (Minneapolis, MN); Jordyn Purvins (Minneapolis, MN)
Assignee: THERMO KING LLC
B60H1/00735B60H1/00971G06Q10/0832
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,850,914
App. No.
17/326,439
Granted
Dec 26, 2023
Kind
B2
Abstract

Methods and systems for conveying or operationalizing data from a transport climate control system (TCCS) that provides climate control within an internal space moved by a vehicle are disclosed. A method includes determining, by a controller of the TCCS, a set of TCCS operational measurements; obtaining, by the controller, a set of TCCS operational settings; determining, by the controller, a set of cargo measurements; creating a shipment performance log based on the set of TCCS operational measurements, the set of TCCS operational settings, and the set of cargo measurements; publishing the shipment performance log to a data repository; and retrieving the shipment performance log to facilitate disposition of goods in the internal space.

Claims (47)

1. A method for conveying data from a transport climate control system (TCCS) that provides climate control within an internal space moved by a vehicle, the method comprising:

determining, by a controller, a set of TCCS operational measurements;

obtaining, by the controller, a set of TCCS operational settings, the set of TCCS operational settings including one or more of a tight temperature control configuration, a loose temperature control configuration, a setpoint temperature, a continuous airflow configuration, and a start-stop airflow configuration;

determining, by the controller, a set of cargo measurements;

tracking a freshness score to reflect a condition of goods in the internal space based on sensor data sensed by at least one sensor;

determining the set of TCCS operational settings to achieve a freshness target based on the freshness score;

controlling the TCCS with the set of TCCS operational settings;

creating a shipment performance log based on the set of TCCS operational measurements, the set of TCCS operational settings, and the set of cargo measurements;

publishing the shipment performance log to a data repository;

retrieving the shipment performance log; and

facilitating disposition of goods in the internal space based on the retrieved shipment performance log, disposition of goods including one or more of accepting the goods, inspecting the goods, rejecting the goods, and intervening to save the goods based on the shipment performance log,

wherein the data repository is Blockchain, publishing the shipment performance log includes disseminating, notarizing, and sharing the shipment performance log via the data repository,

wherein publishing the shipment performance log to the data repository is performed via telematics of the TCCS.

2. The method according to claim 1 , further comprising:

obtaining, by a plurality of TCCS sensors, the set of TCCS operational measurements; and

communicating the set of TCCS operational measurements to the controller;

wherein the set of TCCS operational measurements includes one or more of an ambient temperature outside of the internal space, an ambient humidity outside of the internal space, a compressor suction pressure, a compressor discharge pressure, a supply air temperature of air supplied into the internal space, a return air temperature of air returned from the internal space, and a humidity within the internal space.

3. The method according to claim 1 , wherein the set of TCCS operational measurements includes pre-loading operational measurements, operational measurements in transit, and operational measurements upon arrival of destination.

4. The method according to claim 1 , wherein the tight temperature control configuration is for controlling a deviation of an actual temperature in the internal space from the setpoint temperature, the deviation being less than or equal to a first predetermined threshold.

5. The method according to claim 1 , wherein the loose temperature control configuration is for controlling a deviation of an actual temperature in the internal space from the setpoint temperature, the deviation being greater than a first predetermined threshold but less than or equal to a second predetermined threshold.

6. The method according to claim 1 , wherein the set of cargo measurements includes one or more of a weight of goods in the internal space, a type of goods in the internal space, a temperature measurement in the internal space, a humidity measurement in the internal space, and a vibration measurement in the internal space.

7. The method according to claim 1 , wherein the shipment performance log includes one or more of temperature controlled by the TCCS, an insulation performance of the TCCS, and a certification of the goods.

8. A transport climate control system (TCCS) that provides climate control within an internal space moved by a vehicle, the TCCS comprising:

a refrigeration circuit including a compressor, a condenser, an expansion device, and an evaporator; and

a controller,

wherein the controller is configured to:

determine a set of TCCS operational measurements;

obtain a set of TCCS operational settings, the set of TCCS operational settings including one or more of a tight temperature control configuration, a loose temperature control configuration, a setpoint temperature, a continuous airflow configuration, and a start-stop airflow configuration;

determine a set of cargo measurements;

track a freshness score to reflect a condition of goods in the internal space based on sensor data sensed by at least one sensor;

determine the set of TCCS operational settings to achieve a freshness target based on the freshness score;

control the TCCS with the set of TCCS operational settings;

create a shipment performance log based on the set of TCCS operational measurements, the set of TCCS operational settings, and the set of cargo measurements;

publish the shipment performance log to a data repository;

retrieve the shipment performance log; and

facilitate disposition of goods in the internal space based on the retrieved shipment performance log, disposition of goods including one or more of accepting the goods, inspecting the goods, rejecting the goods, and intervening to save the goods based on the shipment performance log,

wherein the data repository is Blockchain, publishing the shipment performance log includes disseminating, notarizing, and sharing the shipment performance log via the data repository,

wherein publishing the shipment performance log to the data repository is performed via telematics of the TCCS.

9. The TCCS according to claim 8 , further comprising:

a plurality of TCCS sensors configured to obtain the set of TCCS operational measurements, the plurality of TCCS sensors communicates the set of TCCS operational measurements to the controller;

wherein the set of TCCS operational measurements includes one or more of an ambient temperature outside of the internal space, an ambient humidity outside of the internal space, a compressor suction pressure, a compressor discharge pressure, a supply air temperature of air supplied into the internal space, a return air temperature of air returned from the internal space, and a humidity within the internal space.

10. The TCCS according claim 8 , wherein the set of TCCS operational measurements includes pre-loading operational measurements, operational measurements in transit, and operational measurements upon arrival of destination.

11. The TCCS according to claim 8 , wherein the tight temperature control configuration is for controlling a deviation of an actual temperature in the internal space from the setpoint temperature, the deviation being less than or equal to a first predetermined threshold.

12. The TCCS according to claim 8 , wherein the loose temperature control configuration is for controlling a deviation of an actual temperature in the internal space from the setpoint temperature, the deviation being greater than a first predetermined threshold but less than or equal to a second predetermined threshold.

13. The TCCS according to claim 8 , wherein the set of cargo measurements includes one or more of a weight of goods in the internal space, a type of goods in the internal space, a temperature measurement in the internal space, a humidity measurement in the internal space, and a vibration measurement in the internal space.

14. The TCCS according to claim 8 , wherein the shipment performance log includes one or more of temperature controlled by the TCCS, an insulation performance of the TCCS, and a certification of the goods.

15. The TCCS according to claim 8 , further comprising a set of sensors embedded in the goods, the set of sensors is configured to obtain the set of cargo measurements.

Assignments (2)
CHANGE OF NAME Recorded Sep 13, 2023
From: THERMO KING CORPORATION
To: THERMO KING LLC
Reel/Frame 064896/0552 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 11, 2023
From: POLYZOIS, CHRISTOS ALKIVIADIS; FOSLIEN, WENDY K.; SINGH, HARDEEP; OVSAK, GRANT; SRNEC, MATTHEW; LUMPKIN, TRAVIS; MALHEIROS, GEORGE WALLACE; PURVINS, JORDYN
To: THERMO KING CORPORATION
Reel/Frame 064859/0848 →
Continuity (2)
Provisional Application 63028144 · May 21, 2020
Related Publication 20210362564A1 · Nov 25, 2021