IP Library Granted Patent US 9,553,741
Granted Patent B2
US 9,553,741 · App. 15/143,756 · Granted Jan 24, 2017

Adaptive demodulation method and apparatus using an artificial neural network to improve data recovery in high speed channels

Inventors: Dhadesugoor Vaman (Spring, TX); Oluwatobi Olabiyi (Herndon, VA)
Assignee: Kelquan Holdings Ltd.
H04L25/03165H04L25/03006H04L25/03019H04L25/03159H04L25/03821H04L2025/03636
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Quick Facts
Patent No.
US 9,553,741
App. No.
15/143,756
Granted
Jan 24, 2017
Kind
B2
Abstract

A neural network demodulator is used within a receiver to provide Inter Symbol Interference (ISI) channel equalization and to correct for I/Q/phase imbalance. The neural network is trained with a single integrated training step to simultaneously handle the channel impairments of ISI equalization and I/Q phase imbalance as opposed to prior art methods of separately addressing each channel impairment in sequence.

Claims (15)

1. A method for use in a communication system, the communication system including a transmitter and a receiver, to provide ISI channel equalization and to correct I/Q phase imbalance, comprising,

providing a demodulator as part of the receiver, the demodulator including a trainable neural network, and

training the neural network in a single integrated training step to simultaneously enable the demodulator to provide ISI channel equalization and to correct I/Q phase imbalance.

2. A method in accordance with claim 1 wherein the neural network includes two layers, the method further comprising the step of implementing a transfer function between the two layers of the neural network to ensure convergence of the neural network training step.

3. A method in accordance with claim 2 wherein transmitter data symbols and RF carrier signals are sent over the communication channel from the transmitter to the receiver with the I/Q imbalance resulting from carrier phase misalignment between the transmitter and receiver, said neural network training step utilizing information sent over the communication channel to determine coefficients needed by the neural network to correct said carrier phase misalignment.

4. A method in accordance with claim 3 wherein transmitter data symbols and RF carrier signals are sent over the communication channel from the transmitter to the receiver with ISI resulting by the change of bandwidth of the carrier signal frequency causing interference between adjacent transmitter data symbols, said neural network training step utilizing information sent over the communication channel to determine coefficients needed by the neural network to prevent the interference between transmitter data symbols.

5. A method in accordance with claim 4 wherein the neural network training process determines coefficients W1, b1 W2 and b2 such that the mean squared error between a transmitted symbol and a symbol received at the output of the demodulator is minimized.

6. A communications system, comprising,

a transmitter for sending modulated data symbols and carrier signals over the communications channel,

a receiver including a demodulator, and a trainable neural network included as part of the demodulator, which when trained in a single integrated training step allows the demodulator to simultaneously provide ISI channel equalization and correct I/Q phase imbalance.

7. A communications system in accordance with claim 6 , wherein the neural network includes two layers, one hidden layer and one output layer, the hidden layer applying a first set coefficients to data symbols from the receiver to create a first set of fixed point words, and processing the first set of fixed point words with a transfer function.

8. A communications system in accordance with claim 7 , wherein the first set of fixed point words are sent to the output layer after processing by the transfer function and applied to a second set of coefficients.

9. A communications system in accordance with claim 8 , wherein the neural network is trained based on information sent over the communication channel to generate the first and second set of coefficients.

10. A communications system in accordance with claim 9 , wherein the first and second set of coefficients ensure that the mean squared error between a transmitted data symbol and a symbol at the output of the demodulator is minimized.

11. A method as recited in accordance with claim 1 , further comprising training the neural network with carrying length of input vector.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2016
From: VAMAN, DHADESUGOOR R.; OLABIYI, OLUWATOBI
To: KELQUAN HOLDINGS LTD.
Reel/Frame 040175/0262 →
Continuity (4)
Continuation 14714536 · May 18, 2015
Continuation In Part 14312072 · Jun 23, 2014
Provisional Application 61837742 · Jun 21, 2013
Related Publication 20160248610A1 · Aug 25, 2016