Kernel Metadata Declaration — on demand
ISO 26324 asks a DOI Registration Agency to produce a Kernel Metadata Declaration for every DOI it issues. Give any DOI: its public record becomes a record in the Smart Scholars DOI Metadata Format 1.0, checked against every rule, and declared as the Kernel XML.
✓ Meets every rule of the format
The record below is complete and every controlled value is a DOI Attribute Value Set 2.3 spelling. The Declaration on the right follows DOIMetadataKernel.xsd element by element.
What the DOI identifies
ADVANCED ENCRYPTION TECHNIQUES FOR INDUSTRIAL IOT AND CONTROL SYSTEMS
10.46243/jst.2024.v9.i03.pp13-20 · JournalArticle — an article in a journal · Digital · Visual · Language · en
Published 2024-03-26
Part of Journal of Science & Technology · ISSN 2456-5660 · vol. 09 · no. 03 · pp. 13–20
Principal agents
- Jyothsna Devi Dontha (author → Author)
- Longman Publishers (publisher → Publisher)
Also in the record, outside the Kernel: the abstract, the licence, 4 links, 30 references. Source: Crossref (member 25296), registered 2026-08-29, last deposited 2026-09-20.
System metadata — ISO 26324:2025, Annex B · DOI Handbook 10.1
Each element by the standard's name and the Handbook's (in grey), read off the record.
| DOI Name DOI name | 10.46243/jst.2024.v9.i03.pp13-20 |
| Referent Type referentType | Creation |
| Referent Sub-Type referentSubType | JournalArticle — an article in a journal |
| Referent Name(s) referentName(s) | ADVANCED ENCRYPTION TECHNIQUES FOR INDUSTRIAL IOT AND CONTROL SYSTEMS (PrincipalTitle, en) |
| Basic Metadata basicMetadata | author: Jyothsna Devi Dontha publisher: Longman Publishers published: 2024-03-26 part of: Journal of Science & Technology · ISSN 2456-5660 · vol. 09 · no. 03 · pp. 13–20 language: en form: Digital · Visual · Language |
| Referent Identifier(s) alternateIdentifier(s) | none besides the DOI |
| Registration Authority registrationAuthorityCode | Crossref — issued by Crossref (member 25296); held here as a copy |
| Created Date issueDate | 2026-08-29 |
| relatedIdentifiers | none needed — the descriptive metadata is in this record |
The record
{
"format": "smartscholars-doi-metadata/1.0",
"doi": "10.46243/jst.2024.v9.i03.pp13-20",
"referent": "Creation",
"type": "JournalArticle",
"structural_type": "Digital",
"modes": [
"Visual"
],
"characters": [
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],
"titles": [
{
"value": "ADVANCED ENCRYPTION TECHNIQUES FOR INDUSTRIAL IOT AND CONTROL SYSTEMS",
"type": "PrincipalTitle",
"lang": "en"
}
],
"identifiers": [
{
"type": "DOI",
"value": "10.46243/jst.2024.v9.i03.pp13-20"
}
],
"agents": [
{
"role": "author",
"name": {
"given": "",
"family": "Jyothsna Devi Dontha"
},
"sequence": "first"
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{
"role": "publisher",
"name": {
"org": "Longman Publishers"
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],
"dates": {
"published": "2024-03-26",
"date_type": "PublicationDate",
"online": "2024-03-26"
},
"language": "en",
"container": {
"type": "Journal",
"titles": [
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"type": "PrincipalTitle"
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"identifiers": [
{
"type": "ISSN",
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"medium": "electronic"
}
],
"volume": "09",
"issue": "03",
"pages": {
"first": "13",
"last": "20"
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},
"links": [
{
"url": "https://www.jst.org.in/index.php/pub/article/view/1194",
"return_type": "text/html",
"primary": true
},
{
"url": "https://www.jst.org.in/index.php/pub/article/download/1194/959",
"purpose": "text-mining",
"return_type": "application/pdf"
},
{
"url": "https://www.jst.org.in/index.php/pub/article/download/1194/1436",
"purpose": "text-mining",
"return_type": "application/xml"
},
{
"url": "https://jst.org.in/index.php/pub/article/view/1194/959",
"purpose": "similarity-checking"
}
],
"abstract": {
"value": "The increasing integration of Industrial Internet of Things (IIoT) and Industrial Control Systems (ICS) into critical infrastructure has led to significant advancements in automation, data analysis, and operational efficiency. However, this connectivity also introduces vulnerabilities and cyber threats, which necessitate robust security measures. Among these, encryption plays a crucial role in securing communication channels and protecting sensitive data from unauthorized access and tampering. This paper explores advanced encryption techniques for IIoT and ICS, focusing on their effectiveness in safeguarding industrial networks. Various cryptographic methods, including symmetric, asymmetric, and hybrid encryption, are evaluated for their applicability in industrial environments. Additionally, quantum-resistant algorithms are also discussed, considering the growing potentialof quantum computing to break traditional encryption methods. The research highlights the need for encryption standards tailored to the unique requirements of industrial systems, such as low latency, high throughput, and scalability. The study also proposes a set of best practices for implementing encryption across IIoT and ICS, providing insights into future trends and challenges.",
"lang": "en"
},
"license": {
"url": "https://creativecommons.org/licenses/by/4.0/",
"start": "2024-03-26",
"applies_to": "vor"
},
"references": [
{
"key": "ref1",
"unstructured": "Zhang, Y., et al. (2019). “Enhancing Industrial Control System Security with Hybrid Cryptography.”"
},
{
"key": "ref2",
"unstructured": "Wang, L., et al. (2020). “Cryptographic Solutions for Securing Industrial IoT Networks.”"
},
{
"key": "ref3",
"unstructured": "NIST (2020). “Post-Quantum Cryptography Standards: Current Progress and Future Directions.”"
},
{
"key": "ref4",
"unstructured": "Kim, J., et al. (2021). “Post-Quantum Cryptography in Industrial Systems: A Review.”"
},
{
"key": "ref5",
"unstructured": "Li, Z., et al. (2020). “Homomorphic Encryption for Secure Industrial IoT Data Processing.”"
},
{
"key": "ref6",
"unstructured": "Patel, S., & Kumar, P. (2021). “Efficient Encryption Algorithms for Resource-Constrained Industrial IoT Devices.”"
},
{
"key": "ref7",
"unstructured": "Gupta, A., & Sharma, S. (2021). “Quantum-Resistant Cryptography for Industrial IoT.”"
},
{
"key": "ref8",
"unstructured": "Zhang, J., et al. (2020). “AES and RSA in Industrial Control Systems: Performance and Security Analysis.”"
},
{
"key": "ref9",
"unstructured": "Yadav, R., et al. (2021). “Challenges and Solutions in Industrial IoT Encryption.”"
},
{
"key": "ref10",
"unstructured": "Rathi, S., & Bhat, M. (2020). “Security of Industrial IoT Systems: A Hybrid Approach.”"
},
{
"key": "ref11",
"unstructured": "Liu, M., & Wang, Z. (2020). “Enhancing Data Security in Industrial Control Systems Using Advanced Cryptography.”"
},
{
"key": "ref12",
"unstructured": "Singh, V., et al. (2020). “Cryptographic Protocols for Industrial IoT Communication.”"
},
{
"key": "ref13",
"unstructured": "Chou, T., et al. (2021). “Exploring the Role of Quantum Cryptography in Securing ICS Networks.”"
},
{
"key": "ref14",
"unstructured": "Sharma, K., & Singh, P. (2021). “Post-Quantum Cryptography and Its Application in ICS.”"
},
{
"key": "ref15",
"unstructured": "Zhang, S., & Li, H. (2020). “Security in Industrial IoT: A Survey of Cryptographic Techniques.”"
},
{
"key": "ref16",
"unstructured": "Xie, Z., et al. (2020). “Homomorphic Encryption for Industrial IoT: Applications and Challenges.”"
},
{
"key": "ref17",
"unstructured": "Kumar, R., & Dhawan, S. (2021). “Lattice-Based Cryptography for Industrial IoT Security.”"
},
{
"key": "ref18",
"unstructured": "Bhagat, P., et al. (2020). “Blockchain and Encryption for Securing Industrial IoT.”"
},
{
"key": "ref19",
"unstructured": "Lee, H., & Gupta, S. (2020). “Quantum-Resistant Jyothsna Devi Dontha: ADVANCED ENCRYPTION TECHNIQUES FOR INDUSTRIAL IOT AND CONTROL SYSTEMS Cryptographic Solutions for Industrial Control Systems.”"
},
{
"key": "ref20",
"unstructured": "Patel, V., et al. (2020). “Hybrid Encryption for Industrial IoT: A Review and Analysis.”"
},
{
"key": "ref21",
"unstructured": "Liu, Y., & Zhao, L. (2021). “The Future of Cryptography in Industrial Systems.”"
},
{
"key": "ref22",
"unstructured": "Sharma, P., et al. (2021). “Secure and Efficient Cryptography for Industrial IoT Networks.”"
},
{
"key": "ref23",
"unstructured": "Agarwal, S., et al. (2021). “Security Challenges and Solutions in Industrial IoT Cryptography.”"
},
{
"key": "ref24",
"unstructured": "Singh, N., & Rathi, M. (2021). “Lattice-Based Cryptography for Securing IIoT Systems.”"
},
{
"key": "ref25",
"unstructured": "Kumar, S., et al. (2020). “Practical Applications of Homomorphic Encryption in Industrial Systems.”"
},
{
"key": "ref26",
"unstructured": "Choi, S., et al. (2021). “Quantum-Resistant Cryptographic Algorithms for Secure IoT Networks.”"
},
{
"key": "ref27",
"unstructured": "Gupta, D., & Sharma, R. (2020). “Quantum Computing and Its Impact on Cryptographic Security in Industrial IoT.”"
},
{
"key": "ref28",
"unstructured": "Pappas, M., et al. (2021). “Post-Quantum Cryptographyfor Critical Infrastructure Protection.”"
},
{
"key": "ref29",
"unstructured": "Zhang, X., et al. (2021). “Optimizing Encryption for Industrial IoT Security.”"
},
{
"key": "ref30",
"unstructured": "Park, K., et al. (2020). “Security Protocols for Industrial Control Systems in 5G Networks.”"
}
],
"record": {
"registrant": "Longman Publishers",
"registered": "2026-08-29",
"updated": "2026-09-20",
"issue_number": 1,
"source": "crossref-api",
"source_agency": "Crossref (member 25296)"
}
}The Kernel Metadata Declaration
DOIMetadataKernel.xsd · namespace http://www.doi.org/2010/DOISchema · Attribute Value Sets 2.3 · draft — the agency's DOI name is filled in on accreditation
<?xml version="1.0" encoding="UTF-8"?>
<!-- DRAFT declaration: Smart Scholars is not yet a DOI Registration Agency. registrationAgencyDoiName is a marker (10.0/ is no RA's prefix) and is filled in on accreditation. -->
<kernelMetadata xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.doi.org/2010/DOISchema https://www.doi.org/doi_schemas/DOIMetadataKernel.xsd" xmlns="http://www.doi.org/2010/DOISchema">
<referentDoiName>10.46243/jst.2024.v9.i03.pp13-20</referentDoiName>
<primaryReferentType>Creation</primaryReferentType>
<registrationAgencyDoiName>10.0/smart-scholars-draft</registrationAgencyDoiName>
<issueDate>2026-10-04</issueDate>
<issueNumber>1</issueNumber>
<referentCreation>
<name primaryLanguage="en">
<value>ADVANCED ENCRYPTION TECHNIQUES FOR INDUSTRIAL IOT AND CONTROL SYSTEMS</value>
<type>PrincipalTitle</type>
</name>
<identifier>
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<uri returnType="text/html" doesContentNegotiation="true">https://doi.org/10.46243/jst.2024.v9.i03.pp13-20</uri>
<type>DOI</type>
</identifier>
<identifier>
<uri returnType="text/html">https://www.jst.org.in/index.php/pub/article/view/1194</uri>
<type>URI</type>
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<identifier>
<uri>https://www.jst.org.in/index.php/pub/article/download/1194/959</uri>
<type>URI</type>
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<identifier>
<uri returnType="application/xml">https://www.jst.org.in/index.php/pub/article/download/1194/1436</uri>
<type>URI</type>
</identifier>
<identifier>
<uri>https://jst.org.in/index.php/pub/article/view/1194/959</uri>
<type>URI</type>
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<structuralType>Digital</structuralType>
<mode>Visual</mode>
<character>Language</character>
<type>JournalArticle</type>
<principalAgent>
<name>
<value>Jyothsna Devi Dontha</value>
<type>PrincipalName</type>
</name>
<role>Author</role>
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<principalAgent>
<name>
<value>Longman Publishers</value>
<type>PrincipalName</type>
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<role>Publisher</role>
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<linkedCreation>
<name>
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<type>PrincipalTitle</type>
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<referentCreationRole>Part</referentCreationRole>
<referentCreationSequenceIdentifier>
<value>09</value>
<type>VolumeNumber</type>
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<type>IssueNumber</type>
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<value>13-20</value>
<type>PageNumber</type>
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<language>en</language>
<languageOfReferentContent>
<language>en</language>
<languageOfReferentContentType>Original</languageOfReferentContentType>
</languageOfReferentContent>
<creationDate>
<date>2024-03-26</date>
<creationDateType>PublicationDate</creationDateType>
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</kernelMetadata>
