Upsampling of decompressed financial time-series data using a neural network
A system and methods for upsampling of decompressed financial time-series data after lossy compression using a neural network that integrates AI-based techniques to enhance compression quality. It incorporates a novel deep-learning neural network that upsamples decompressed data to restore information lost during lossy compression, taking advantage of cross-correlations between time-series data sets.
1 . A system for enhancing decompressed data after lossy compression using a neural network, comprising:
a computing system comprising at least a memory and a processor;
two or more datasets that have been compressed with lossy compression;
a deep learning neural network trained to recover lost information associated with a compressed bit stream; and
a decoder comprising a first plurality of programming instructions stored in the memory and operable on the processor, wherein the first plurality of programming instructions, when operating on the processor, cause the computing device to:
receive a compressed bit stream,
decompress each of the compressed bit stream; and
use the decompressed bit stream as input into the deep learning neural network to recover information lost during lossy compression of the compressed bit stream.
2 . The system of claim 1 , wherein the data comprises a sequence of observations on variables.
3 . The system of claim 1 , wherein the compressed bit stream comprises a plurality of channels, wherein each of the plurality of channels is associated with a respective data stream, and each of the respective data streams are correlated with the others.
4 . A method for enhancing decompressed data after lossy compression using a neural network, comprising the steps of:
training a deep learning neural network to recover lost information associated with a compressed bit stream;
receiving the compressed bit stream,
decompressing the compressed bit stream; and
using the decompressed bit stream as input into the deep learning neural network to recover information lost during lossy compression of the compressed bit stream.
5 . The method of claim 4 , wherein the data comprises a sequence of observations on variables.
6 . The method of claim 4 , wherein the compressed bit stream comprises a plurality of channels, wherein each of the plurality of channels is associated with a respective time-series data stream, and each of the respective data streams are correlated with the others.
7 . One or more non-transitory computer-storage media having computer-executable instructions embodied thereon that, when executed by one or more processors of a computing system employing a neural upsampler configured for data, cause the computing system to perform the method of claim 4 .
8 . The media of claim 7 , wherein the data comprises a sequence of observations on variables.
9 . The media of claim 7 , wherein the compressed bit stream comprises a plurality of channels, wherein each of the plurality of channels is associated with a respective data stream, and each of the respective data streams are correlated with the others.