An efficient secure predictive demand forecasting system using Ethereum virtual machine

IET Blockchain Pub Date : 2024-02-26 DOI:10.1049/blc2.12068
Himani Saraswat, Mahesh Manchanda, Sanjay Jasola
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Abstract

Predictive demand forecasting plays a pivotal role in optimizing supply chain management, enabling businesses to effectively allocate resources and minimize operational inefficiencies. This paper introduces a novel approach to enhancing demand forecasting processes by leveraging the Ethereum virtual machine within a blockchain framework. The proposed system capitalizes on the inherent security, transparency, and decentralized nature of blockchain technology to create a secure and efficient platform for predictive demand forecasting. The system leverages the Ethereum virtual machine to establish a secure, decentralized, and tamper‐resistant platform for demand prediction while ensuring data integrity and privacy. By utilizing the capabilities of smart contracts and decentralized applications within the Ethereum ecosystem, the proposed system offers an efficient and transparent solution for demand forecasting challenges. The current research focused on Ethereum virtual machine characteristics, features, components, and implementation details. A secured framework for the prediction of demand forecasting systems is proposed. Finally, the authors tried to validate and optimize the gas cost by using distinguished statistics and analysis.
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使用以太坊虚拟机的高效安全需求预测系统
预测性需求预测在优化供应链管理方面发挥着举足轻重的作用,使企业能够有效地分配资源,最大限度地减少运营低效。本文介绍了一种在区块链框架内利用以太坊虚拟机加强需求预测流程的新方法。拟议的系统利用区块链技术固有的安全性、透明度和去中心化特性,为预测性需求预测创建了一个安全高效的平台。该系统利用以太坊虚拟机建立了一个安全、去中心化、防篡改的需求预测平台,同时确保了数据的完整性和隐私性。通过利用以太坊生态系统中智能合约和去中心化应用程序的功能,拟议系统为需求预测挑战提供了一个高效、透明的解决方案。当前的研究重点是以太坊虚拟机的特点、功能、组件和实施细节。作者提出了一个用于预测需求预测系统的安全框架。最后,作者试图通过使用不同的统计和分析方法来验证和优化气体成本。
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