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    <title>anirban · basu - transparency</title>
    <subtitle>Researcher in Computational Trust, Privacy, Security and Artificial Intelligence</subtitle>
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    <updated>2026-04-24T00:00:00+00:00</updated>
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    <entry xml:lang="en">
        <title>SCATMAN: A Framework for Enhancing Trustworthiness in Digital Supply Chains</title>
        <published>2023-11-01T00:00:00+00:00</published>
        <updated>2026-04-24T00:00:00+00:00</updated>
        
        <author>
          <name>Anirban Basu</name>
        </author>
        
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        <content type="html" xml:base="https://anirbanbasu.netlify.app/publications/eckel2023scatman/">&lt;!-- citation: eckel2023scatman --&gt;
&lt;h3&gt;&lt;i&gt;Michael Eckel, &lt;u&gt;Anirban Basu&lt;/u&gt;, Satoshi Kai, Hevais Simo Fhom, Sinisa Dukanovic, Henk Birkholz, Shingo Hane and Matthias Lieske&lt;/i&gt;&lt;/h3&gt;
&lt;div&gt;&lt;b&gt;Abstract:&lt;/b&gt; In this paper, we present a framework and an architecture that aim to enable and manage trust in supply chains. Our architecture addresses the authenticity and integrity of devices and processes within heterogeneous system landscapes. We identify and discuss the current challenges in digital supply chains and lay out security, privacy, and interoperability requirements that must be met for successful implementation. We hypothesize that the overall perception of trust in a supply chain depends on the trustworthiness of all digital systems involved, including hardware, software, and information flow. Our proposed architecture helps enhance trustworthiness based on verifiable, indisputable, and believable digital evidence for devices and processes in supply chains, including the entire hardware and software lifecycles. We actively advocate for a mixed landscape of centralized and decentralized solutions for the storage of evidence and trust information. This can include traditional centralized databases and distributed ledger technologies. We discuss the auditability and accountability of digital evidence using trust-enabling technologies, and present a preliminary proof-of-concept (PoC) implementation in a real-world application scenario.&lt;/div&gt;
&lt;table class=&quot;table-publication-metadata&quot;&gt;
&lt;tbody&gt;
&lt;tr&gt;
&lt;th scope=&quot;col&quot;&gt;address&lt;/th&gt;
&lt;td&gt;Exeter, UK&lt;/td&gt;
&lt;/tr&gt;
&lt;tr&gt;
&lt;th scope=&quot;col&quot;&gt;booktitle&lt;/th&gt;
&lt;td&gt;Proceedings of the IEEE 22nd International Conference on Trust, Security and Privacy in Computing and Communications (TrustCom)&lt;/td&gt;
&lt;/tr&gt;
&lt;tr&gt;
&lt;th scope=&quot;col&quot;&gt;doi&lt;/th&gt;
&lt;td&gt;&lt;a href=&quot;https://doi.org/10.1109/TrustCom60117.2023.00110&quot; target=&quot;_blank&quot;&gt;10.1109/TrustCom60117.2023.00110&lt;/a&gt;&lt;/td&gt;
&lt;/tr&gt;
&lt;tr&gt;
&lt;th scope=&quot;col&quot;&gt;keywords&lt;/th&gt;
&lt;td&gt;privacy, distributed-ledger, digital-systems, supply-chains, distributed-databases, computer-architecture, software, trustworthiness, integrity, transparency, trusted-computing, confidential-computing, society-5-0, industrie-4-0, digital-twin, supply-chain-security, distributed-system-security, smart-factory, blockchain-technology&lt;/td&gt;
&lt;/tr&gt;
&lt;tr&gt;
&lt;th scope=&quot;col&quot;&gt;month&lt;/th&gt;
&lt;td&gt;11&lt;/td&gt;
&lt;/tr&gt;
&lt;tr&gt;
&lt;th scope=&quot;col&quot;&gt;pages&lt;/th&gt;
&lt;td&gt;750-761&lt;/td&gt;
&lt;/tr&gt;
&lt;/tbody&gt;
&lt;/table&gt;
&lt;details&gt;
&lt;summary&gt;Cite this publication, using BibTeX&lt;/summary&gt;
&lt;pre class=&quot;giallo&quot; style=&quot;color: #F8F8F2; background-color: #272822;&quot; &gt;&lt;code data-lang=&quot;bibtex&quot;&gt;&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #F92672;&quot;&gt;@inproceedings&lt;/span&gt;&lt;span&gt;{&lt;/span&gt;&lt;span style=&quot;color: #A6E22E;text-decoration: underline;&quot;&gt;eckel2023scatman&lt;/span&gt;&lt;span&gt;,&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  abstract&lt;/span&gt;&lt;span&gt; = {In this paper, we present a framework and an architecture that aim to enable and manage trust in supply chains. Our architecture addresses the authenticity and integrity of devices and processes within heterogeneous system landscapes. We identify and discuss the current challenges in digital supply chains and lay out security, privacy, and interoperability requirements that must be met for successful implementation. We hypothesize that the overall perception of trust in a supply chain depends on the trustworthiness of all digital systems involved, including hardware, software, and information flow. Our proposed architecture helps enhance trustworthiness based on verifiable, indisputable, and believable digital evidence for devices and processes in supply chains, including the entire hardware and software lifecycles. We actively advocate for a mixed landscape of centralized and decentralized solutions for the storage of evidence and trust information. This can include traditional centralized databases and distributed ledger technologies. We discuss the auditability and accountability of digital evidence using trust-enabling technologies, and present a preliminary proof-of-concept (PoC) implementation in a real-world application scenario.},&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  address&lt;/span&gt;&lt;span&gt; = {Exeter, UK},&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  author&lt;/span&gt;&lt;span&gt; = {Eckel, Michael and Basu, Anirban and Kai, Satoshi and Simo Fhom, Hevais and Dukanovic, Sinisa and Birkholz, Henk and Hane, Shingo and Lieske, Matthias },&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  booktitle&lt;/span&gt;&lt;span&gt; = {Proceedings of the IEEE 22nd International Conference on Trust, Security and Privacy in Computing and Communications (TrustCom)},&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  doi&lt;/span&gt;&lt;span&gt; = {10.1109/TrustCom60117.2023.00110},&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  keywords&lt;/span&gt;&lt;span&gt; = {Privacy;Distributed ledger;Digital systems;Supply chains;Distributed databases;Computer architecture;Software;trustworthiness;integrity;transparency;Trusted Computing;confidential computing;Society 5.0;Industrie 4.0;digital twin;supply chain security;distributed system security;smart factory;blockchain technology},&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  month&lt;/span&gt;&lt;span&gt; = {November},&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  pages&lt;/span&gt;&lt;span&gt; = {750-761},&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  title&lt;/span&gt;&lt;span&gt; = {SCATMAN: A Framework for Enhancing Trustworthiness in Digital Supply Chains},&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span style=&quot;color: #66D9EF;&quot;&gt;  year&lt;/span&gt;&lt;span&gt; = {2023},&lt;/span&gt;&lt;/span&gt;
&lt;span class=&quot;giallo-l&quot;&gt;&lt;span&gt;}&lt;/span&gt;&lt;/span&gt;&lt;/code&gt;&lt;/pre&gt;&lt;/details&gt;
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