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Proceedings ArticleDOI

A Secure Sharding Protocol For Open Blockchains

TLDR
ELASTICO is the first candidate for a secure sharding protocol with presence of byzantine adversaries, and scalability experiments on Amazon EC2 with up to $1, 600$ nodes confirm ELASTICO's theoretical scaling properties.
Abstract
Cryptocurrencies, such as Bitcoin and 250 similar alt-coins, embody at their core a blockchain protocol --- a mechanism for a distributed network of computational nodes to periodically agree on a set of new transactions. Designing a secure blockchain protocol relies on an open challenge in security, that of designing a highly-scalable agreement protocol open to manipulation by byzantine or arbitrarily malicious nodes. Bitcoin's blockchain agreement protocol exhibits security, but does not scale: it processes 3--7 transactions per second at present, irrespective of the available computation capacity at hand. In this paper, we propose a new distributed agreement protocol for permission-less blockchains called ELASTICO. ELASTICO scales transaction rates almost linearly with available computation for mining: the more the computation power in the network, the higher the number of transaction blocks selected per unit time. ELASTICO is efficient in its network messages and tolerates byzantine adversaries of up to one-fourth of the total computational power. Technically, ELASTICO uniformly partitions or parallelizes the mining network (securely) into smaller committees, each of which processes a disjoint set of transactions (or "shards"). While sharding is common in non-byzantine settings, ELASTICO is the first candidate for a secure sharding protocol with presence of byzantine adversaries. Our scalability experiments on Amazon EC2 with up to $1, 600$ nodes confirm ELASTICO's theoretical scaling properties.

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Citations
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Journal ArticleDOI

A Comparative Analysis of Scalability Issues within Blockchain-based Solutions in the Internet of Things

TL;DR: In this paper, the authors proposed an evaluation framework of scalability in IoT environments, encompassing critical criteria like throughput, latency, and block size, and concluded the results by highlighting six overarching scalability issues of blockchain-based solutions in IoT.
Book ChapterDOI

DeChain: A Blockchain Framework Enhancing Decentralization via Sharding

TL;DR: DeChain this article proposes a new shard-based blockchain framework called DeChain which distributes the blockchain database into different nodes in protocol level, which greatly reduces the storage burden and enhances the decentralization of blockchain network.
Posted Content

Cost-Effective Data Feeds to Blockchains via Workload-Adaptive Data Replication

TL;DR: In this paper, a cost-effective data feed that dynamically replicates data between the blockchain and an off-chain cloud storage is presented, and a series of online algorithms are proposed that achieve the bounded worstcase cost in blockchain's Gas.
Posted Content

Hydra: A Multiple Blockchain Protocol for Improving Transaction Throughput.

TL;DR: Hydra, a decentralized protocol that improves transaction throughput without the security trade-off and has no central component is proposed, which distributes blocks over multiple blockchains and rigorously analyze the double spend attack in a multiple-blockchain protocol.
Journal ArticleDOI

Utility system for farmers using data analytics and blockchain – KrishiCoin

TL;DR: The blockchain is utilized to make exchanges between the administration and farmers which decides the minimum support price and the model goes for making security in the chain and exchanges with the goal that the information isn’t altered.
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Proceedings ArticleDOI

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