System and method for communicating data in a train having one or more locomotive consists
First Claim
1. A router transceiver unit comprising:
- a network adapter module configured for electrical connection to a network interface unit, wherein the network adapter module is configured to receive high bandwidth network data from the network interface unit; and
a signal modulator module electrically connected to the network adapter module and comprising a physical layer and a data link layer, the signal modulator module comprising an electrical output and internal circuitry, wherein the electrical output is configured for electrical connection to a trainline, and wherein the internal circuitry is configured to receive the high bandwidth network data from the network adapter module, to convert the high bandwidth network data into modulated network data in a form suitable for transmission over the trainline, and to transmit the modulated network data, comprising the high bandwidth network data, over the trainline;
wherein the data link layer comprises an application protocol convergence layer, a logical link control layer, and a medium access control layer, wherein the application protocol convergence layer is configured to accept network frames of the high bandwidth network data from the network adapter module and to encapsulate the network frames into medium access control service data units, the logical link control layer is configured to receive the medium access control service data units from the application protocol convergence layer for at least one of encryption, aggregation, segmentation, or automatic repeat-request, and the medium access control layer is configured to schedule channel access; and
wherein the physical layer comprises a physical coding layer, a physical medium attachment layer, and a physical medium dependent layer, wherein the physical coding layer is configured to generate physical layer headers, the physical medium attachment layer is configured for scrambling and forward error correction coding, and the physical medium dependent layer is configured for interfacing with the trainline and for the conversion of the high bandwidth network data into the modulated network data using orthogonal frequency-division multiplexing (OFDM) modulation.
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Accused Products
Abstract
A system for communicating data in a train is provided. The system includes at least one respective router transceiver unit positioned in each of at least two rail vehicles of the train. Each router transceiver unit is coupled to a trainline that extends between the rail vehicles. The trainline is an existing cable bus used in the train for transferring propulsion control data between the rail vehicles that controls at least one of tractive effort or braking effort of the rail vehicles. The router transceiver units are configured to communicate network data over the trainline. In one embodiment, the trainline is an Electrically Controlled Pneumatic (ECP) trainline and the propulsion control data is ECP brake data used to control operations of brakes in the train.
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Citations
21 Claims
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1. A router transceiver unit comprising:
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a network adapter module configured for electrical connection to a network interface unit, wherein the network adapter module is configured to receive high bandwidth network data from the network interface unit; and a signal modulator module electrically connected to the network adapter module and comprising a physical layer and a data link layer, the signal modulator module comprising an electrical output and internal circuitry, wherein the electrical output is configured for electrical connection to a trainline, and wherein the internal circuitry is configured to receive the high bandwidth network data from the network adapter module, to convert the high bandwidth network data into modulated network data in a form suitable for transmission over the trainline, and to transmit the modulated network data, comprising the high bandwidth network data, over the trainline; wherein the data link layer comprises an application protocol convergence layer, a logical link control layer, and a medium access control layer, wherein the application protocol convergence layer is configured to accept network frames of the high bandwidth network data from the network adapter module and to encapsulate the network frames into medium access control service data units, the logical link control layer is configured to receive the medium access control service data units from the application protocol convergence layer for at least one of encryption, aggregation, segmentation, or automatic repeat-request, and the medium access control layer is configured to schedule channel access; and wherein the physical layer comprises a physical coding layer, a physical medium attachment layer, and a physical medium dependent layer, wherein the physical coding layer is configured to generate physical layer headers, the physical medium attachment layer is configured for scrambling and forward error correction coding, and the physical medium dependent layer is configured for interfacing with the trainline and for the conversion of the high bandwidth network data into the modulated network data using orthogonal frequency-division multiplexing (OFDM) modulation. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11)
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12. A router transceiver unit comprising:
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a main bus; a control unit comprising a controller and a control unit bus, wherein the controller is electrically connected to the control unit bus for communications over the control unit bus; a switch configured to process and route network data, wherein the switch interfaces the control unit with the main bus; a network interface portion electrically connected to the main bus and comprising an Ethernet transceiver circuit and a network port portion electrically connected to the Ethernet transceiver circuit, wherein the network port portion comprises an Ethernet transformer and a receptacle for receiving a network cable; and a VDSL module comprising a physical interface portion for connection of the VDSL module to the main bus, a VDSL control electrically connected to the physical interface portion, a VDSL analog front end unit electrically connected to the VDSL control, and a VDSL port unit electrically connected to the VDSL analog, front end unit, wherein the VDSL analog front end unit is configured for transceiving modulated network data over a trainline, wherein the VDSL control is configured for at least one of converting or processing the network data for modulation and de-modulation into the modulated network data, and wherein the VDSL port unit comprises transformer circuitry and a connection mechanism for physically and electrically connecting the VDSL module to the trainline. - View Dependent Claims (13, 14, 15, 16, 17, 18, 19, 20)
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21. A router transceiver unit comprising:
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a network adapter module configured for electrical connection to a network interface unit, wherein the network adapter module is configured to receive high bandwidth network data from the network interface unit; and a signal modulator module electrically connected to the network adapter module, the signal modulator module comprising an electrical output and internal circuitry, wherein the electrical output is configured for electrical connection to a trainline, and wherein the internal circuitry is configured to receive the high bandwidth network data from the network adapter module, to convert the high bandwidth network data into modulated network data in a form suitable for transmission over the trainline, and to transmit the modulated network data, comprising the high bandwidth network data, over the trainline; wherein the trainline comprises a plurality of discreet electrical wires, each of the discreet electrical wires comprising a respective copper wire that is from 12 to 14 gauge, and wherein the signal modulator module is configured to transmit the modulated network data, comprising the high bandwidth network data, over a single one of the discreet electrical wires of the trainline.
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Specification