Generating semantic triplets from unstructured text
US-2024202447-A1 · Jun 20, 2024 · US
US2016132467A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016132467-A1 |
| Application number | US-201514702897-A |
| Country | US |
| Kind code | A1 |
| Filing date | May 4, 2015 |
| Priority date | Nov 6, 2014 |
| Publication date | May 12, 2016 |
| Grant date | — |
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A method, a computer program product, and a computer system for determination of encoding based on received code point classes are provided. The computer implemented method includes transferring data in a text form. The computer implemented method includes, in response to determining that decoding the data in text form passes, transferring some or all of the data in a binary form. The computer implemented method includes calculating code point class proportions for the data in the text form and the data in the binary form and determining a best form for transferring the data, based on comparison of the code point class proportions.
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1 . A computer program product for determination of encoding based on received code point classes, the computer program product comprising a computer readable storage medium having program code embodied therewith, the program code executable to: transfer data in a text form; in response to determining that decoding the data in the text form is successful, transfer some or all of the data in a binary form; calculate code point class proportions for the data in the text form and the data in the binary form; and determine a best form for transferring the data, based on comparison of the code point class proportions, wherein the best form is chosen from the binary form and the text form, wherein the best form encodes the data correctly with greater confidence. 2 . The computer program product of claim 1 , further comprising the program code executable to: in response to determining that the text form is the best form, use the data in the text form. 3 . The computer program product of claim 1 , further comprising the program code executable to: in response to determining that the text form is not the best form, transfer the data in the binary form; and use the data in the binary form. 4 . The computer program product of claim 1 , further comprising the program code executable to: in response to determining that decoding the data in text form is not successful, transfer the data in the binary form; and use the data in the binary form. 5 . A computer system for determination of encoding based on received code point classes, the computer system comprising: one or more processors, one or more computer readable tangible storage devices, and program instructions stored on at least one of the one or more computer readable tangible storage devices for execution by at least one of the one or more processors, the program instructions executable to: transfer data in a text form; in response to determining that decoding the data in the text form is successful, transfer some or all of the data in a binary form; calculate code point class proportions for the data in the text form and the data in the binary form; and determine a best form for transferring the data, based on comparison of the code point class proportions, wherein the best form is chosen from the binary form and the text form, wherein the best form encodes the data correctly with greater confidence. 6 . The computer system of claim 5 , further comprising the program instructions executable to: in response to determining that the text form is the best form, use the data in the text form. 7 . The computer system of claim 5 , further comprising the program instructions executable to: in response to determining that the text form is not the best form, transfer the data in the binary form; and use the data in the binary form. 8 . The computer system of claim 5 , further comprising the program instructions executable to: in response to determining that decoding the data in text form is not successful, transfer the data in the binary form; and use the data in the binary form.
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