IP Library Granted Patent US 11,610,486
Granted Patent B1
US 11,610,486 · App. 16/947,198 · Granted Mar 21, 2023

Connected-vehicle interface module and method of use

Inventors: Brian P. Scharles (Mukwonago, WI); Brian P. Scharles, Jr. (Mukwonago, WI)
Assignee: Traffic & Parking Control Co., Inc.
G08G1/096716B60R16/023
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Quick Facts
Patent No.
US 11,610,486
App. No.
16/947,198
Granted
Mar 21, 2023
Kind
B1
Abstract

A connected-vehicle interface module is provided that includes a connected-vehicle controller, a wireless data connected-vehicle radio for receiving an activation signal indicating a road condition, and a connected-vehicle interface controller. The connected-vehicle interface controller including a microcontroller and a plurality of universal asynchronous receiver transmitters for receiving, transmitting, and processing data received by at least one of the connected-vehicle controller and the connected-vehicle radio, and communicated to the microcontroller via one or more wired connections; a memory device for storing program data, and an ethernet transceiver and communication port, coupled to the microcontroller, for connection and communication with a connected vehicle road side unit, wherein the activation signal is communicated to the connected vehicle road side unit via the communication port, and at least one operator interface in communication with at least one of the connected-vehicle radio, the connected-vehicle interface controller, and the connected-vehicle controller.

Claims (38)

1. A connected-vehicle interface module comprising:

a connected-vehicle controller;

a wireless data connected-vehicle radio for receiving an activation signal from a first vehicle warning system controller indicating a road condition;

a connected-vehicle interface controller comprising:

a microcontroller and a plurality of universal asynchronous receiver transmitters for receiving, transmitting, and processing data received by at least one of the connected-vehicle controller and the connected-vehicle radio, and communicated to the microcontroller via one or more wired connections;

a memory device in communication with the microcontroller for storing program data; and

an ethernet transceiver and communication port, coupled to the microcontroller, for connection and communication with a connected vehicle road side unit, wherein the activation signal is communicated to the connected vehicle road side unit via the communication port; and

at least one operator interface in communication with at least one of the connected-vehicle radio, the connected-vehicle interface controller, and the connected-vehicle controller.

2. The connected-vehicle interface module of claim 1 , wherein the activation signal is received from the first vehicle warning system controller during activation of a first vehicle warning system.

3. The connected-vehicle interface module of claim 2 , wherein the first vehicle warning system includes a sensor comprising of at least one of a radar speed sensor, a vehicle presence sensor, a radar direction sensor, a vehicle height sensor, an ice detection sensor, a moisture detection sensor, a thermal detection sensor, a pedestrian detection sensor, and a water level sensor.

4. The connected-vehicle interface module of claim 1 , wherein the connected vehicle road side unit is located proximate to the connected-vehicle interface module.

5. A connected-vehicle interface module comprising:

a connected-vehicle controller;

a wireless data connected-vehicle radio;

a connected-vehicle interface controller comprising:

a microcontroller and a plurality of universal asynchronous receiver transmitters for receiving, transmitting, and processing data received by at least one of the connected-vehicle controller and the connected-vehicle radio, and communicated to the microcontroller via one or more wired connections;

a memory device in communication with the microcontroller; and

an ethernet transceiver and communication port, coupled to the microcontroller, for connection and communication with a connected vehicle road side unit;

at least one operator interface in communication with at least one of the connected-vehicle radio, the connected-vehicle controller, and the connected-vehicle interface controller,

wherein the connected-vehicle interface controller is coupled to a sensor for detecting a road condition, and wherein the connected-vehicle interface controller generates an activation signal upon detection of the road condition by the sensor and communicates the activation signal to the connected vehicle road side unit via the communication port.

6. The connected-vehicle interface module of claim 5 , wherein the sensor is one of a radar speed sensor, a radar direction sensor, an ice detection sensor, a moisture detection sensor, a vehicle presence sensor, a vehicle height sensor, a thermal detection sensor, a pedestrian detection sensor, and a water level sensor.

7. The connected-vehicle interface module of claim 5 , wherein the connected vehicle road side unit is located proximate to the connected-vehicle interface controller.

8. A method of communicating a sensed condition on a roadway to a driver comprising:

sensing a condition on the roadway using a sensor in communication with a vehicle warning system controller;

activating an annunciator via the vehicle warning system controller;

wirelessly transmitting an activation signal from the vehicle warning system controller;

receiving the activation signal at a connected-vehicle interface module;

communicating the activation signal to a connected vehicle road side unit via a wired connection from the connected-vehicle interface module to the connected vehicle road side unit; and

transmitting via the connected vehicle road side unit, the activation signal to an in-vehicle interface device for annunciation to the driver.

9. A communication system comprising:

a connected vehicle road side unit; and

a housing enclosing a power supply for the connected vehicle road side unit and a connected-vehicle interface module, the connected-vehicle interface module comprising:

a connected-vehicle controller;

a wireless data connected-vehicle radio for receiving an activation signal indicating a road condition;

a microcontroller and a plurality of universal asynchronous receiver transmitters for receiving, transmitting, and processing data received by at least one of the connected-vehicle controller and the connected-vehicle radio, and communicated to the microcontroller via one or more wired connections;

a memory device in communication with the microcontroller for storing program data;

at least one configuration interface in communication with at least one of the connected-vehicle radio, the microcontroller, and the connected-vehicle controller; and

an ethernet transceiver and communication port for connection and communication with the connected vehicle road side unit, wherein the activation signal is communicated to the connected vehicle road side unit via an ethernet cable coupled to the communication port.

Assignments (4)
PATENT SECURITY AGREEMENT Recorded Nov 18, 2024
From: TRAFFIC AND PARKING CONTROL CO., LLC; ADAPTIVE MICRO SYSTEMS, LLC
To: BARINGS FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 069383/0442 →
ENTITY CONVERSION Recorded Nov 6, 2024
From: TRAFFIC AND PARKING CONTROL CO., INC.
To: TRAFFIC AND PARKING CONTROL CO., LLC
Reel/Frame 069318/0022 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S NAME FROM "TRAFFIC AND PARKING CONTROL CO. INC." TO "TRAFFIC AND PARKING CONTROL CO., INC." PREVIOUSLY RECORDED AT REEL: 53290 FRAME: 500. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Nov 4, 2024
From: SCHARLES, BRIAN P.; SCHARLES, BRIAN P., JR.
To: TRAFFIC AND PARKING CONTROL CO., INC.
Reel/Frame 069301/0543 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2020
From: SCHARLES, BRIAN P.; SCHARLES, BRIAN P., JR.
To: TRAFFIC AND PARKING CONTROL CO. INC.
Reel/Frame 053290/0500 →
Continuity (1)
Provisional Application 62886562 · Aug 14, 2019