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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.

Reads the DOI's public Crossref record; nothing is stored. Until Smart Scholars is accredited, every Declaration is marked as a draft in the XML itself.

✓ 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

Hotel Reviews Analysis Using Machine Learning Algorithms and Text Mining Model

10.46243/jst.2023.v8.i12.pp31-39 · JournalArticle — an article in a journal · Digital · Visual · Language · en

Published 2023-12-12

Part of Journal of Science & Technology · ISSN 2456-5660 · vol. 8 · no. 12 · pp. 31–39

Principal agents

  • Lekha Sri Lekha Sri (author → Author)
  • Longman Publishers (publisher → Publisher)

Also in the record, outside the Kernel: the abstract, the licence, 4 links, 9 references. Source: Crossref (member 25296), registered 2024-02-16, last deposited 2026-09-17.

⬇ Record (JSON) ⬇ Declaration (XML)

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.2023.v8.i12.pp31-39
Referent Type
referentType
Creation
Referent Sub-Type
referentSubType
JournalArticle — an article in a journal
Referent Name(s)
referentName(s)
Hotel Reviews Analysis Using Machine Learning Algorithms and Text Mining Model (PrincipalTitle, en)
Basic Metadata
basicMetadata
author: Lekha Sri Lekha Sri
publisher: Longman Publishers
published: 2023-12-12
part of: Journal of Science & Technology · ISSN 2456-5660 · vol. 8 · no. 12 · pp. 31–39
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
2024-02-16
relatedIdentifiersnone needed — the descriptive metadata is in this record

The record

{
    "format": "smartscholars-doi-metadata/1.0",
    "doi": "10.46243/jst.2023.v8.i12.pp31-39",
    "referent": "Creation",
    "type": "JournalArticle",
    "structural_type": "Digital",
    "modes": [
        "Visual"
    ],
    "characters": [
        "Language"
    ],
    "titles": [
        {
            "value": "Hotel Reviews Analysis Using Machine Learning Algorithms and Text Mining Model",
            "type": "PrincipalTitle",
            "lang": "en"
        }
    ],
    "identifiers": [
        {
            "type": "DOI",
            "value": "10.46243/jst.2023.v8.i12.pp31-39"
        }
    ],
    "agents": [
        {
            "role": "author",
            "name": {
                "given": "Lekha Sri",
                "family": "Lekha Sri"
            },
            "sequence": "first"
        },
        {
            "role": "publisher",
            "name": {
                "org": "Longman Publishers"
            }
        }
    ],
    "dates": {
        "published": "2023-12-12",
        "date_type": "PublicationDate",
        "online": "2023-12-12"
    },
    "language": "en",
    "container": {
        "type": "Journal",
        "titles": [
            {
                "value": "Journal of Science & Technology",
                "type": "PrincipalTitle"
            }
        ],
        "identifiers": [
            {
                "type": "ISSN",
                "value": "2456-5660",
                "medium": "electronic"
            }
        ],
        "volume": "8",
        "issue": "12",
        "pages": {
            "first": "31",
            "last": "39"
        }
    },
    "links": [
        {
            "url": "https://www.jst.org.in/index.php/pub/article/view/839",
            "return_type": "text/html",
            "primary": true
        },
        {
            "url": "https://www.jst.org.in/index.php/pub/article/download/839/768",
            "purpose": "text-mining",
            "return_type": "application/pdf"
        },
        {
            "url": "https://www.jst.org.in/index.php/pub/article/download/839/1652",
            "purpose": "text-mining",
            "return_type": "application/xml"
        },
        {
            "url": "https://jst.org.in/admin/uploads/Batch-12-Cybersecurity.pdf",
            "purpose": "similarity-checking"
        }
    ],
    "abstract": {
        "value": "that enhances products, services, and marketing strategies. However, amidst the genuine feedback, a shadow looms—the challenge of fake reviews. These deceptive evaluations can be produced through humangenerated means, where content creators are paid to craft authentic-appearing but fictitious reviews. Alternatively, automated processes driven by textgeneration algorithms have become increasingly prevalent. Technological advancements in natural language processing (NLP) and machine learning (ML) have facilitated the automation of fake reviews, creating them at scale and a fraction of the cost compared to their human-generated counterparts. The significance of addressing fake reviews is underscored by scholarly contributions such as Wu et al.’s conceptual framework, which outlines an agenda for investigating fake reviews. Their work 1,2,3B.Tech Student, Department of Emerging Technologies (Cyber Security) from Malla Reddy College of Engineering and Technology, Hyderabad, India. 4Assistant Professor, Department of Emerging Technologies (Cyber Security) from Malla Reddy College of Engineering and Technology, Hyderabad, India. DOI:https://doi.org/10.46243/jst.2023.v8.i12.pp31-39 20 Lekha Sri, Aman Kumar Piyush, Puli Vikram, D Kalpana: Hotel Reviews Analysis Using Machine Learning Algorithms and Text Mining Model sheds light on the antecedents, consequences, and interventions in understanding this phenomenon. However, a recurring challenge in this domain is the lack of high-quality datasets, limiting the scope of research. Wu et al. notably address this by compiling and summarizing existing fake review-related public datasets. Another notable contribution comes from Liu et al., who propose a method for detecting fake reviews based on product-associated review records. Their approach involves analyzing the characteristics of review data and employing an isolation forest algorithm to detect outlier reviews. This method presents a fresh perspective on outlier review detection, with their experiments demonstrating its effectiveness. In essence, the exploration of fake reviews is not just an academic pursuit but a crucial aspect of navigating the increasingly complex landscape of online opinions. Addressing this challenge is vital for maintaining the integrity of customer feedback and ensuring that businesses can trust and act upon the information provided by reviews, ultimately fostering a more transparent and trustworthy digital marketplace. relevant datasets is emphasized, with studies often validating models on real review datasets. Accuracy metrics such as recall, precision, and F1 score are standard in evaluating model performance. Some studies introduce unique perspectives, such as considering timing elements in reviews or exploring collusion relationships between reviewers. Deep learning techniques and transformer models are frequently integrated, showcasing an interest in advanced methodologies. Additionally, the focus on specific domains, such as hotel reviews or online opinions, tailors detection methods to the nuances of the data. Overall, researchers consistently acknowledge current gaps in the field and propose future directions for more robust outcomes, reflecting the ongoing evolution of fake review detection research. In conclusion, this literature review highlights the diverse methodologies employed in the pursuit of fake review detection. From feature extraction techniques, and text mining, to advanced machine learning algorithms and unique perspectives on timing and collusion relationships, these studies collectively contribute to the ongoing efforts to create robust systems capable of identifying and mitigating the impact of deceptive reviews in online platforms. they explore the collusion relationship between reviewers to build a reviewer group collusion model. Evaluations show that the review group method and reviewer group collusion models can effectively improve the precision by 4%–7% compared to the baselines in the fake reviews classification task especially when reviews are posted by professional review spammers. METHODOLOGY The research paper on fake review detection using machine learning algorithms involves a systematic approach to model development and training the model, evaluation, and validation. Dataset Collection and Selection: Identify or construct a comprehensive and diverse dataset of online reviews, specifically focusing on the domain of interest, such as hotel reviews. This dataset should include both genuine and fake reviews. Data Preprocessing in Machine Learning: Data preprocessing is a process of preparing the raw data and making it suitable for a machine learning model. It is the first and crucial step in creating a machinelearning model. Generally contains noises, missing values, and maybe in an unusable format which cannot be directly used for machine learning models. Data preproces",
        "lang": "en"
    },
    "license": {
        "url": "https://creativecommons.org/licenses/by/4.0/",
        "start": "2023-12-12",
        "applies_to": "vor"
    },
    "references": [
        {
            "key": "ref1",
            "doi": "10.1016/j.dss.2020.113280",
            "unstructured": "Yuanyuan Wu, Eric W.T. Ngai, Pengkun Wu, Chong Wu, Fake online reviews: Literature review, synthesis, and directions for future research, Decision Support Systems, Volume 132, 2020, 113280, ISSN 0167-9236, https:// doi.org/10.1016/j.dss.2020.113280"
        },
        {
            "key": "ref2",
            "doi": "10.1109/emr.2019.2928964",
            "unstructured": "W. Liu, J. He, S. Han, F. Cai, Z. Yang and N. Zhu, “A Method for the Detection of Fake Reviews Based on Temporal Features of Reviews and Comments,” in IEEE Engineering Management Review, vol. 47, no. 4, pp. 67- 79, 1 Fourth quarter,Dec. 2019, doi: 10.1109/ EMR.2019.2928964"
        },
        {
            "key": "ref3",
            "doi": "10.1109/access.2021.3075573",
            "unstructured": "R. Mohawesh. “Fake Reviews Detection: A Survey,” in IEEE Access, vol. 9, pp. 65771-65802, 2021, doi: 10.1109/ACCESS.2021.3075573"
        },
        {
            "key": "ref4",
            "doi": "10.1007/978-3-319-69155-8_9",
            "unstructured": "Ahmed, H., Traore, I., Saad, S. (2017). Detection of Online Fake News Using N-Gram Analysis and Machine Learning Techniques. In: Traore, I., Woungang, I., Awad, A. (eds) Intelligent, Secure, and Dependable Systems in Distributed and Cloud Environments. ISDDC 2017. Lecture Notes in Computer Science (), vol 10618. Springer, Cham. https://doi.org/10.1007/978- 3-319-69155-8_9"
        },
        {
            "key": "ref5",
            "doi": "10.1016/j.eswa.2016.03.020",
            "unstructured": "Atefeh Heydari, Mohammadali Tavakoli, Naomie Salim, Detection of fake opinions using time series, Expert Systems with Applications, Volume 58, 2016, Pages 83-92, ISSN 0957-4174, https://doi.org/10.1016/j.eswa.2016.03.020"
        },
        {
            "key": "ref6",
            "doi": "10.1007/s10618-021-00772-6",
            "unstructured": "Paul, H., Nikolaev, A. Fake review detection on online E-commerce platforms: a systematic literature review. Data Min Knowl Disc 35, 1830–1881 (2021). https://doi.org/10.1007/ s10618-021-00772-6"
        },
        {
            "key": "ref7",
            "doi": "10.1007/978-3-319-11119-3_1",
            "unstructured": "Deng, X., Chen, R. (2014). Sentiment Analysis Based Online Restaurants Fake Reviews Hype Detection. In: Han, W., Huang, Z., Hu, C., Zhang, H., Guo, L. (eds) Web Technologies and Applications. APWeb 2014. Lecture Notes in Computer Science, vol 8710. Springer, Cham. https://doi.org/10.1007/978-3-319-11119-3_1"
        },
        {
            "key": "ref8",
            "doi": "10.1007/978-3-030-68799-1_19",
            "unstructured": "Khan, H., Asghar, M.U., Asghar, M.Z., Srivastava, G., Maddikunta, P.K.R., Gadekallu, T.R. (2021). Fake Review Classification Using Supervised Machine Learning. In: et al. Pattern Recognition. ICPR International Workshops and Challenges. ICPR 2021. Lecture Notes in Computer Science (), vol 12664. Springer, Cham. https://doi. org/10.1007/978-3-030-68799-1_19"
        },
        {
            "key": "ref9",
            "doi": "10.1007/s11036-020-01688-z",
            "unstructured": "Li, Y., Wang, F., Zhang, S. et al. Detection of Fake Reviews Using Group Model. Mobile Netw Appl 26, 91–103 (2021). https://doi.org/10.1007/ s11036-020-01688-z"
        }
    ],
    "record": {
        "registrant": "Longman Publishers",
        "registered": "2024-02-16",
        "updated": "2026-09-17",
        "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.2023.v8.i12.pp31-39</referentDoiName>
  <primaryReferentType>Creation</primaryReferentType>
  <registrationAgencyDoiName>10.0/smart-scholars-draft</registrationAgencyDoiName>
  <issueDate>2026-10-04</issueDate>
  <issueNumber>1</issueNumber>
  <referentCreation>
    <name primaryLanguage="en">
      <value>Hotel Reviews Analysis Using Machine Learning Algorithms and Text Mining Model</value>
      <type>PrincipalTitle</type>
    </name>
    <identifier>
      <nonUriValue>10.46243/jst.2023.v8.i12.pp31-39</nonUriValue>
      <uri returnType="text/html" doesContentNegotiation="true">https://doi.org/10.46243/jst.2023.v8.i12.pp31-39</uri>
      <type>DOI</type>
    </identifier>
    <identifier>
      <uri returnType="text/html">https://www.jst.org.in/index.php/pub/article/view/839</uri>
      <type>URI</type>
    </identifier>
    <identifier>
      <uri>https://www.jst.org.in/index.php/pub/article/download/839/768</uri>
      <type>URI</type>
    </identifier>
    <identifier>
      <uri returnType="application/xml">https://www.jst.org.in/index.php/pub/article/download/839/1652</uri>
      <type>URI</type>
    </identifier>
    <identifier>
      <uri>https://jst.org.in/admin/uploads/Batch-12-Cybersecurity.pdf</uri>
      <type>URI</type>
    </identifier>
    <structuralType>Digital</structuralType>
    <mode>Visual</mode>
    <character>Language</character>
    <type>JournalArticle</type>
    <principalAgent>
      <name>
        <value>Lekha Sri Lekha Sri</value>
        <type>PrincipalName</type>
      </name>
      <role>Author</role>
    </principalAgent>
    <principalAgent>
      <name>
        <value>Longman Publishers</value>
        <type>PrincipalName</type>
      </name>
      <role>Publisher</role>
    </principalAgent>
    <linkedCreation>
      <name>
        <value>Journal of Science &amp; Technology</value>
        <type>PrincipalTitle</type>
      </name>
      <identifier>
        <nonUriValue>2456-5660</nonUriValue>
        <type>ISSN</type>
      </identifier>
      <referentCreationRole>Part</referentCreationRole>
      <referentCreationSequenceIdentifier>
        <value>8</value>
        <type>VolumeNumber</type>
      </referentCreationSequenceIdentifier>
      <referentCreationSequenceIdentifier>
        <value>12</value>
        <type>IssueNumber</type>
      </referentCreationSequenceIdentifier>
      <referentCreationSequenceIdentifier>
        <value>31-39</value>
        <type>PageNumber</type>
      </referentCreationSequenceIdentifier>
    </linkedCreation>
    <language>en</language>
    <languageOfReferentContent>
      <language>en</language>
      <languageOfReferentContentType>Original</languageOfReferentContentType>
    </languageOfReferentContent>
    <creationDate>
      <date>2023-12-12</date>
      <creationDateType>PublicationDate</creationDateType>
    </creationDate>
  </referentCreation>
</kernelMetadata>
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