Over the last decade there has been a continuing decline in social trust on the part of individuals with regards to the handling and fair use of personal data, digital assets and other related rights in general. At the same time, there has been a change in the employment patterns for many people through the emergence of the gig economy. These gig workers include artists, songwriters and musicians in the music industry. We discuss the notion of the data cooperative with fiduciary responsibilities to its members, which is similar in purpose to credit unions in the financial sector. A data cooperative for artists and musicians allows the community to share IT resources, such as data storage, analytics processing, blockchains and distributed ledgers. A cooperative can also employ smart contracts to remedy the various challenges currently faced by the music industry with regards to the license tracking management.
The purpose of the research is to investigate the implementation of blockchains (BCs) and smart contracts (SCs) in smart tourism. BCs and SCs in the context of tourism are underexplored. Data were collected and analysed from relevant secondary sources in extensive desktop research between January and August 2018. The results highlight some implemented examples of BCs and SCs in tourism and few that are still in probation phase. The findings are interesting for tourism policy-makers, professionals, academics and tourism suppliers who are interested in real value added of BCs and SCs in tourism.
Andrea Gaggioli, Shayan Eskandari, Pietro Cipresso, Edoardo Lozza
Blockchain is widely regarded as a breakthrough innovation that may have a profound impact on the economy and society, of a magnitude comparable to the effects of the introduction of the Internet itself. In essence, a blockchain is a decentralized peer-to-peer network with no central authority figure, which adds information to the distributed database by collectively validating the accuracy of data. Since each node of the network participates in the review and confirmation of the new information before being accepted, the need for a trustworthy intermediary is eliminated. However, as trust plays an essential role in affecting decisions when transacting with one another, it is important to understand which implications the decentralized nature of blockchain may have on individuals' sense of trust. In this contribution, we argue that the adoption of blockchain is not only a technological, but foremostly a psychological challenge, which crucially depends on the possibility of creating a trust management approach that matches the underlying distributed communication system. We first describe the decentralization technologies and possibilities they hold for the near future. Next, we discuss the psycho-social implications of the introduction of decentralized processes of trust, examining some potential scenarios, and outline a research agenda.
Blockchain technologies enable new forms of data sharing in platforms. This raises questions around how they are jointly developed and managed in blockchain consortia and what role public agencies play in those efforts. Based on an analysis of prior work on data sharing in public-private partnerships and other blockchain projects, we analyze the case of the Cardossier. The Cardossier project and (later) association develops a platform to link the public and private actors in the Swiss car ecosystem. The participating car registration authority has the roles of an actor in interorganizational processes, supplier of data, source of trust, guarantor of data quality, user of data, and incentive for making goods public. We conclude that the public agencies have a very important role in blockchain consortia and propose that they should use this role actively as part of their efforts to create public value.
The rise of blockchain has resulted in discussions on (new) governance models with multiple actors collaborating. Incidents and problems occurred due to flaws in blockchain protocols, smart contracts and Decentralized Autonomous Organizations (DAOs). Often it is unclear how decisions are made concerning evolvement of blockchain applications. In this paper, we identify and analyze potential challenges regarding governance of blockchain initiatives in various types of decentralized networks using literature and case study research. The governance challenges are classified based on a framework consisting of different layers (infrastructure, application, company and institution/country) and stages (design, operate, evolve/crisis). The results show that in various stages and layers, different challenges occur. Furthermore, blockchain applications governance and blockchain infrastructure governance were found to be entangled adding to the challenge. Our research shows a specific need for further research into governance models for DAO applications on permissionless blockchains, linked to the products and services offered whereas in permissioned blockchains and other type of applications, existing governance models might often be feasible. For developing new governance models, we recommend learning from the lessons from the open source community.
Trung-Viet Nguyen, Lam-Son Lê, Bo Dao, Khuong Nguyen-An
A system for evaluating current services in the tourism industry is one of the sources of reference affecting tourists' decisions. However, such the system may not be trusted by users. The main reason may come from the evaluation result that has been tampered with via a third party or a network attack. Besides, the relationship between service providers and tourists is the service level agreements (SLAs), which is the provider's commitment. Nevertheless, the process of implementing the SLAs is manual, not automatic, so this leads to many disputes. In this study, we propose BlockSLA, an architecture for evaluating and enforcing agreements based on the blockchain. Our proposal uses the blockchain to ensure that the assessment process can be kept safe and reliable through the blockchain consensus processing mechanism. From these evaluations, smart contracts on the blockchain can automatically make compensation immediately and the parties (e.g., tourists, providers) can track these changes on their device. The architectural design is described in detail in this work.
The previous part of this article proposed a conceptual framework for a sociological understanding of the uses of bills of lading. We argued that platforms that aim to facilitate an electronic format of bills of lading should be based upon the constituent components of the practices associated with paper bills of lading. In this second part of the article, we suggest that distributed ledger technology (DLT), including blockchains, is the best technological means for facilitating the use in practice of immaterial bills of lading. The appropriate type of DLT is then evaluated in light of expected legal difficulties.
Abstract Decentralized Autonomous Organizations (DAOs) offer to disrupt all existing business models from derivatives trading to real estate, public services procurement and housing. This presents a unique opportunity for architects and urban designers to reshape the built environment by collectively engaging with finance generally, but also with alternative financial mechanisms, ahead of developers and investment companies who are less motivated by the quality of the built environment.
Purpose The purpose of this paper is to introduce and explore blockchain technology and its potential implementation to hospitality and tourism firms’ wide range of business operations and transactions from a technological and functional point of view. This study’s central interest is to produce novel and rigorous in-depth-review analysis and foundations for a broad discussion and outlook on the potential applications of blockchain technology benefiting hospitality and tourism research, as well as the industry as a whole. Design/methodology/approach This study identifies and proposes several potential areas of the adoption and implementation of blockchain technology to the hospitality and tourism industry, including payment and cryptocurrencies, tracking and service customization, the disintermediation of hospitality and tourism, innovative loyalty programs, smart contracts, integrated property management systems, verified rating and review systems, collaborative initiatives and due diligence and smart tourism, each of which represents fertile avenues for future research. Findings This paper provides extensive critical discussions, reviews and answers to a fundamental question: “What critical functions of Blockchain mechanisms can be implemented to the existing core operational (i.e. booking and reservation systems, guest management, etc.) and business functions (i.e. loyalty/reward programs, agent transactions, etc.) of hospitality and tourism companies?”. Research limitations/implications Future studies should specifically delve further into various angles of this “BizTech” environment based not only on business operations and competition but also on vendor and customer collaboration. Practical implications This study intends to serve as a guidance for future research, facilitate knowledge accumulation and create a new understanding and awareness in both practice and academia. One of the most important applications of blockchain in this industry would be that pertaining to direct booking, online reservation systems (i.e. airlines and online travel agencies) and check-in/out with digital identities. With industry-wide blockchain adoption, guests’ personal information can be digitally validated, saved and secured as previously established cryptographically secured codes verify one’s identity without disclosing essential personal information. Originality/value It is obvious that the hospitality and tourism industry needs urgent technological transformation, industrial innovations and new growth avenues such as the adoption of blockchain technology and systems to maintain its global market share in the future. Therefore, the implementation of blockchain systems can promote the formation of multi-center (i.e. guest operations and customer service), weakly intermediated (i.e. loyalty programs and/or review and rating systems) areas in this industry.
Valentina Gatteschi, Fabrizio Lamberti, Claudio Giovanni Demartini
Chapter 3 introduces the reader to the most relevant technological aspects of blockchain and smart contracts. Specifically, Chapter 3 presents the technological foundations blockchain and smart contracts are built upon, by providing some basic examples, which could help to grasp how this technology works. In addition, it includes an overview of existing, soon to be developed, or potential applications of blockchain and smart contracts in different fields, in order to help the reader understand how they could affect existing processes or, more in general, society.
The last few years have seen the emergence of a growing academic literature on the blockchain. On one side are the supporters, who see its potential to create a true, peer-to-peer (p2p) sharing economy. On the other side are the critics, who argue that the blockchain is more likely to reproduce capitalism than to disrupt it. Using the insights generated by the critical literature on the blockchain, this paper seeks to ask new questions and provide new insights about the development of this technology and how it is likely to transform the global political economy through its capacity to enforce global property rights.
Yueyue Dai, Du Xu, Ke Zhang, Sabita Maharjan · 5 authors
Vehicular Edge Computing (VEC) is a promising paradigm to enable huge amount of multimedia content to be cached in proximity to vehicles. Since vehicles are equipped with a certain amount of caching resource, they can be regarded as edge nodes to expand the caching capacity of the network edge. However, with much sensitive personal information, vehicles may be not willing to cache their content to an untrusted vehicle. Permission blockchain has the potential to address such an issue. In this paper, we utilize permissioned blockchain to design a secure content caching scheme between vehicles. Since high mobility of vehicles makes a dynamic caching environment, we exploit deep reinforcement learning approach to design the content caching scheme. Moreover, we propose a new block verifier selection metric, Proof-of-Utility (PoU), to enable a lightweight permissioned blockchain. Security analysis shows that our proposed blockchain empowered content caching can achieve security and privacy protection. Numerical results based on the Uber dataset indicate the DRL-inspired content caching scheme significantly outperforms two benchmark policies.
Οι υπηρεσίες ονοματοδοσίας παρέχουν τα απαραίτητα θεμέλια για την ανάπτυξη ποικίλων και σημαντικών εφαρμογών, όπως το ηλεκτρονικό εμπόριο και η ηλεκτρονική τραπεζική. Επί του παρόντος, αυτές οι υπηρεσίες ονοματοδοσίας βρίσκονται υπό τον έλεγχο κεντρικοποιημένων οντοτήτων, τις οποίες πρέπει να εμπιστευόμαστε ότι λειτουργούν σωστά. Δυστυχώς, η κεντρικοποίηση (εμπιστοσύνης) επιφέρει πολλά μειονεκτήματα όσον αφορά την ασφάλεια, τη διαθεσιμότητα και την ανοχή σφαλμάτων,όπως φαίνεται από μία πληθώρα περιστατικών ασφάλειας κατά τη διάρκεια των ετών όπου τέτοιες οντότητες έχουν παραβιαστεί. Η αποκέντρωση έχει προταθεί ως εναλλακτική λύση για την αντιμετώπιση αυτών των ζητημάτων. Παρ 'όλα αυτά,η αποκέντρωση εγείρει άλλα προβλήματα όπως, π.χ., η αντιμετώπιση της μη ανταποδοτικότητας και οι Σιβυλλικές επιθέσεις. Σε αυτή τη διατριβή, αξιοποιούμε την επεκτασιμότητα, την ασφάλεια, καθώς και τον ενσωματωμένο μηχανισμό παροχής κινήτρων των συστημάτων blockchain και προτείνουμε τον σχεδιασμό μιας αποκεντρωμένης υπηρεσίας ονοματοδοσίας βασισμένη σε έξυπνα συμβόλαια. Πιο συγκεκριμένα, είμαστε οι πρώτοι που παρουσιάζουμε τον πλήρη φορμαλισμό του προβλήματος σχεδιασμού υπηρεσιών ονοματοδοσίας στο πλαίσιο τoυ μοντέλου Γενικής Σύνθεσης και αποδεικνύουμε την ασφάλεια της κατασκευής μας υπό την ισχυρή υπόθεση RSA στο μοντέλο του Τυχαίου Μαντείου και την ύπαρξη μιας ιδεατής λειτουργικότητας έξυπνου συμβολαίου.Το κύριο εμπόδιο στην πραγματοποίηση μιας υπηρεσίας ονοματοδοσίας βασισμένη σε έξυπνα συμβόλαια είναι το μέγεθος της αποθηκευμένης πληροφορίας σε αυτά η οποία,όντας η πιο δαπανηρή πηγή πρόσβασης και τροποποίησης, θα πρέπει να ελαχιστοποιηθεί για να θεωρηθεί μια κατασκευή βιώσιμη. Επιλύουμε αυτό το ζήτημα ορίζοντας και χρησιμοποιώντας στην υπηρεσία ονοματοδοσίας μας έναν προσθετικό, παγκόσμιο κρυπτογραφικό συσσωρευτή δημόσιας κατάστασης σταθερού μεγέθους, ένα κρυπτογραφικό εργαλείο το οποίο μπορεί να είναι ανεξάρτητου ενδιαφέροντος στο πλαίσιο των πρωτοκόλλων blockchain. Αυτός ο συσσωρευτής προκαλεί αποθήκευση σταθερού μεγέθους πληροφορίας εις βάρος υπολογιστικής πολυπλοκότητας. Για να διερευνήσουμε το αντίκτυπο ανάμεσα σε αυτά τα δύο,προτείνουμε και υλοποιούμε μια δεύτερη κατασκευή, η οποία διατηρεί τις ιδιότητες ασφαλείας της πρώτης και, όπως απεικονίζεται μέσα από την αξιολόγησή μας, είναι η μόνη έκδοση με σταθερού μεγέθους αποθηκευμένη πληροφορία που μπορεί να αναπτυχθεί στη βασική αλυσίδα τουEthereum, της πιο αξιοσημείωτης δημόσιας πλατφόρμας έξυπνων συμβολαίων κατά τη στιγμή αυτής της γραφής. Συγκρίνουμε αυτές τις δύο κατασκευές με την απλή προσέγγιση των περισσότερων προηγούμενων υλοποιήσεων, π.χ., του EthereumName Service, όπου όλα τα αρχεία ταυτότητας αποθηκεύονται πάνω στο έξυπνο συμβόλαιο, για να καταδείξουμε αρκετές ελλείψεις του Ethereumκαι του μοντέλου κοστολόγησής του. Για την αντιμετώπιση αυτών των ζητημάτων, καθώς και άλλων,εισαγάγουμε ένα εναλλακτικό παράδειγμα για την ανάπτυξη εφαρμογών βασισμένες σε έξυπνα συμβόλαια στις οποίες το μέθεγος της αποθηκευμένης πληροφορίας σε αυτά είναι σταθερή και διευκολύνει την επαλήθευση των δεδομένων των εφαρμογών, τα οποία αποθηκεύονται σε και αναζητούνται από ένα εξωτερικό, δυνητικά αναξιόπιστο, δίκτυο αποθήκευσης. Αυτή η προσέγγιση είναι σχετική για ένα ευρύ φάσμα εφαρμογών, όπως κάθε σύστημα αποθήκευσης κλειδιών και τιμών.Δείχνουμε την αποτελεσματικότητα της προσέγγιση μας με την παρουσίαση μιας μελέτης όπου προσαρμόζουμε το πιο ευρέως αναπτυγμένο πρότυπο για ανταλλάξιμα νομίσματα, δηλ., το πρότυπο νομισμάτων ERC20.Αντιμετωπίζουμε τη μονοτονικά αυξανόμενη αποθηκευμένη πληροφορία του Ethereum η οποία, αν δεν ελεγχθεί, θα έχει άμεσο αντίκτυπο στην ασφάλεια του Ethereum και, τελικά, στη μακροζωία του. Εισαγάγουμε επαναλαμβανόμενα τέλη που είναι ανάλογα με την αποθηκευμένη πληροφορία στα έξυπνα συμβόλαια και ρυθμιζόμενα από τους κόμβους που διατηρούν το δίκτυο. Προτείνουμε ένα μοντέλο όπου το κόστος των λειτουργιών αποθήκευσης αντικατοπτρίζει την προσπάθεια που πρέπει να καταβάλουν οι κόμβοι για να τις εκτελέσουν. Δείχνουμε ότι κάτω από ένα τέτοιο σύστημα τιμολόγησης που ενθαρρύνει οικονομία στην αποθηκευμένη πληροφορία στα έξυπνα συμβόλαια, οι κατασκευές που παρουσιάζονται σε αυτή τη διατριβή μειώνουν τα τέλη συναλλαγών κατά μία τάξη μεγέθους. Υποστηρίζουμε ότι αυτές οι βελτιώσεις είναι λογικές για κάθε πλατφόρμα έξυπνων συμβολαίων που επιθυμεί να υποστηρίζει την ανάπτυξη αυθαίρετων κατανεμημένων εφαρμογών από τους χρήστες της.
Ryan Shivers, Mohammad Ashiqur Rahman, Hossain Shahriar
Ride-hailing and ride-sharing applications have recently gained in popularity as a convenient alternative to traditional modes of travel. Current research into autonomous vehicles is accelerating rapidly and will soon become a critical component of a ride-hailing platform's architecture. Implementing an autonomous vehicle ride-hailing platform proves a difficult challenge due to the centralized nature of traditional ride-hailing architectures. In a traditional ride-hailing environment the drivers operate their own personal vehicles so it follows that a fleet of autonomous vehicles would be required for a centralized ride-hailing platform to succeed. Decentralization of the ride-hailing platform would remove a road block along the way to an autonomous vehicle ride-hailing platform by allowing owners of autonomous vehicles to add their vehicle to a community driven fleet when not in use. Blockchain technology is an attractive choice for this decentralized architecture due to its immutability and fault tolerance. This paper proposes a framework for developing a decentralized ride-hailing architecture implemented on the Hyperledger Fabric blockchain platform. The implementation is evaluated using a static analysis tool and performing a performance analysis under heavy network load.
Lucas de Camargo Silva, Mayra Samaniego, Ralph Deters
Community-based online platforms for hospitality services have connected hosts and guests globally. With the increasing popularity of those platforms - e.g., Airbnb - some management issues have attracted the attention of researchers - for instance, granting access to properties and rooms remotely, without requiring hosts and guests to meet in person. Solutions have been proposed - e.g., locks with pin pad and vendor centralized smart locks - but they usually have shortcomings that compromise either security, privacy, or convenience. This research designs and proposes a blockchain-based system for smart door locks to provide the convenience of remote access control management, while security and privacy for both hosts and guests are not compromised. Moreover, to surpass current locks' functionalities, this research proposes a feature that enables the guests to cease the hosts' access to the lock, during their stay. This feature also guarantees to the guest that no one will be able to change that access rule without their explicit approval. The proposed solution integrates Ethereum blockchain as the foundation of the system and uses Infura API as the bridge to connect the IoT infrastructure to the blockchain network. Such architecture alleviates hardware demand from the equipment, which can favor the use of resource-constrained IoT devices. Once Ethereum is used to build the solution, and users are charged fees to perform some actions in the blockchain, the system is evaluated concerning operation costs. Three Ethereum test networks - Ganache, Ropsten, and Rinkeby - were used to run the smart contract and assess the charge to complete significant actions in the system. The results show that the cost to use the smart lock is low, especially if the benefits of security, privacy, and convenience are taken into consideration. Most of the actions yielded fees about cents of a US dollar, where the exception is a one-time payment of USD3.83 - worst-case scenario - to deploy the smart contract - i.e., setup the system.
We develop a blockchain-based mobile ticketing system which utilizes smart contracts and multi-signature to enforce and authorize the executions of transactions. The transactions of buying and using mobile tickets are verified by the blockchain, and the immutable ledger and multi-signature on the blockchain ensures the authenticity and security of the tickets. The experimental results show that the proposed system is very efficient and requires only a nominal cost.
In this chapter, the authors outline the historical evolution of trust and discuss how, for most of human history, trust and reputation have shaped personal relationships. They shed light on today’s sharing economy platforms’ activities in designing and operating reputation systems to leverage digital trust between peers. They further explore opportunities and challenges to foster trust based on blockchain technology and cryptocurrencies in the sharing economy, and analyze the public discourse in the Reddit community addressing these technological advances. They conclude that the advantages of blockchain technology and cryptocurrencies may offer several promising avenues for many sharing economy platforms, as they may allow for improvements regarding the decentralization of control. However, sharing economy platforms must leverage the potential of blockchain and cryptocurrencies with great care, and be aware of the challenges and downsides that these technologies may bring.
The ability to run smart contracts confers on blockchain technology the capability to run autonomous systems, from a simple transaction to an entire decentralized autonomous organization (DAO). When applied to the sharing economy, the blockchain enables users to organize themselves to share resources autonomously. It involves new relationships of trust, and the development of suitable systems of governance. This chapter suggests that blockchain-based sharing economy platforms can imitate the governance models of current decentralized organizations, such as the platform cooperativism and open value networks. It also describes some of the emerging developments based on DAOs and reveals their main limitations. The chapter finishes with an optimistic vision of DAOs as “virtual gated communities” in which developing “sharing in” practices is a way to promote a sense of community among their members.
Advocates of blockchain believe that distributed ledger technologies can provide us with a technological infrastructure to challenge the concentrated power of tech giants such as Amazon, Facebook and Google, and create a more equitable, sustainable and decentralized world. This paper considers these claims and concludes that they are preferable to defending the status quo or arguing that a solution might be found in more and better regulations. Nevertheless, the future remains highly uncertain and we are currently living in a rapidly evolving “space” between two competing realities: a centralized old-world reality and a fast-emerging, but, as yet, incomplete, decentralized reality. We remain optimistic that decentralization is coming but identify powerful competing forces seeking to preserve the status quo. As such, we must encourage more organizations – business, government, investors, charities – to experiment with distributed ledger technologies and to participate actively in the digital transformation. We need more experimentation to address the current shortcomings of decentralisation and to ensure the early arrival of mainstream applications of a technology that has the potential to solve some of the most pressing global challenges of a digital age.
Both the functionality and the flexibility of distributed ledger technology (DLT) systems can raise complex questions of applicable law for users. This chapter considers the challenges of establishing what laws or regulations may be relevant to the operation and governance of DLT systems and transactions conducted on them. It highlights the risks of failing to include express contractual clauses to make the parties' choice of law and forum for dispute resolution clear. It also discusses how governing law and jurisdiction will be assessed in the absence of any express contractual clauses, including an explanation of common DLT governance systems.
Dirk Andreas Zetzsche, Ross P. Buckley, Douglas W. Arner, Anton N. Didenko
The transformative potential of distributed ledger technology (DLT) is attracting significant interest around the world. Many institutions are investing heavily in proof of concept demonstrations, pilot initiatives and the rollout of applications of DLT. Part of the attraction of distributed ledger systems, such as blockchain, lies in their perceived ability to transcend law and regulation. Yet, while the law may be dull and the technology exciting, the impact of the law cannot be simply wished away. With data distributed among many ledgers, legal risks will remain. Legal relationships recorded on, or evidenced by, distributed ledgers may give rise to various forms of liability based on contract, tort, partnership or joint venture structures, specific legislation or breach of fiduciary duties. At the same time, despite existing similarities among common law and civil law systems, the sources of DLT-linked liability may vary substantially across jurisdictions.
Recently, technology startups have leveraged the potential of blockchain-based technologies to govern institutions or interpersonal trust by enforcing signed treaties among different individuals in a decentralized environment. However, it is going to be hard enough convincing that the blockchain technology could completely replace the trust among trading partners in the sharing economy as sharing services always operate in a highly dynamic environment. With the rapid expanding of the rental market, the sharing economy faces more and more severe challenges in the form of regulatory uncertainty and concerns about abuses. This paper proposes an enhanced decentralized sharing economy service using the service level agreement (SLA), which documents the services the provider will furnish and defines the service standards the provider is obligated to meet. The SLA specifications are defined as the smart contract, which facilitates multi-user collaboration and automates the process with no involvement of the third party. To demonstrate the usability of the proposed solution in the sharing economy, a notebook sharing case study is implemented using the Hyperledger Fabric. The functionalities of the smart contract are tested using the Hyperledger Composer. Moreover, the efficiency of the designed approach is demonstrated through a series of experimental tests using different performance metrics.