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Trustable Environmental Monitoring by Means of Sensors Networks on Swarming Autonomous Marine Vessels and Distributed Ledger Technology

机译:通过传感器网络在蜂拥而至的自治船舶和分布式分类账技术的可信环境监测

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摘要

The article describes a highly trustable environmental monitoring system employing a small scalable swarm of small-sized marine vessels equipped with compact sensors and intended for the monitoring of water resources and infrastructures. The technological foundation of the process which guarantees that any third party can not alter the samples taken by the robot swarm is based on the Robonomics platform. This platform provides encrypted decentralized technologies based on distributed ledger tools, and market mechanisms for organizing the work of heterogeneous multi-vendor cyber-physical systems when automated economical transactions are needed. A small swarm of robots follows the autonomous ship, which is in charge of maintaining the secure transactions. The swarm implements a version of Reynolds' Boids model based on the Belief Space Planning approach. The main contributions of our work consist of: (1) the deployment of a secure sample certification and logging platform based on the blockchain with a small-sized swarm of autonomous vessels performing maneuvers to measure chemical parameters of water in automatic mode; (2) the coordination of a leader-follower framework for the small platoon of robots by means of a Reynolds' Boids model based on a Belief Space Planning approach. In addition, the article describes the process of measuring the chemical parameters of water by using sensors located on the vessels. Both technology testing on experimental vessel and environmental measurements are detailed. The results have been obtained through real world experiments of an autonomous vessel, which was integrated as the “leader” into a mixed reality simulation of a swarm of simulated smaller vessels.The design of the experimental vessel physically deployed in the Volga river to demonstrate the practical viability of the proposed methods is shortly described.
机译:本文介绍了采用配备紧凑型传感器和用于水资源和基础设施的监控小型船舶的可伸缩的小群高度可信的环境监测系统。这保证了任何第三方不能改变机器人群采取的样本过程的技术基础是基于Robonomics平台上。该平台提供加密基于分布式总账工具分散技术和市场机制组织异构多厂商网络物理系统的工作,需要自动化的经济交易时。机器人的一小群遵循自主船,这是负责维护安全交易。该群实现了基于信念空间规划方法的一个版本雷诺类鸟群模型。我们工作的主要贡献包括:(1)基于具有自主船只进行演习,以衡量在自动模式下的水化学参数的小型群的blockchain安全认证样品,测井平台的部署; (2)对机器人的小排量一个领导者 - 追随者框架的通过基于信念空间规划方法雷诺类鸟群模型来协调。此外,该文章描述了通过使用位于容器传感器测量水的化学参数的过程。这两种技术在实验器皿和环境测量测试的详细说明。结果已经通过自主容器,其被整合为“领导者”到物理部署在伏尔加河来演示实验容器中模拟小vessels.The设计的群的混合现实模拟真实世界的实验中获得所提出的方法的实际可行性进行简要描述。

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