用区块链让机器人自主组织、自我运营并可审计。
RODEO: RObotic DEcentralized Organization
- 通过ROS-ETH桥接,让机器人接入去中心化组织
- 实验中机器人收入翻倍,自购充电服务延长运行88小时
- 适合研究人机协作与可信自动化系统的开发者
机器人正朝着低人工干预的自主运行发展,但可审计的行为、透明的决策过程以及新型人机交互模式仍是实现持续自主的关键挑战。为此,本文提出RODEO(RObotic DEcentralized Organization),一种基于区块链的框架,为机器人集成信任与问责机制。该框架形式化了面向服务机器人的去中心化自治组织(DAO)。首先,构建了机器人操作系统(ROS)与以太坊(ETH)之间的桥接;其次,提供模板使公司、高校等机构能将服务机器人纳入其运作体系;第三,设计证明验证机制,使机器人行为可被审计。在为期三天的实验中,移动机器人作为垃圾收集员,在实验室场景中完成垃圾收集与智能分类投放任务,提交操作成功证明后获得DAO代币奖励,并用所得资金自购电池充电服务。实验数据显示,机器人收入翻倍,累计资金支撑了最高88小时的未来自主运行。约一分钟的证明验证时间保障了任务执行的可验证性。本研究揭示了机器人与组织如何通过可审计的执行证明与链上结算协同工作。
原文摘要 · Abstract (English)
Robots are improving their autonomy with minimal human supervision. However, auditable actions, transparent decision processes, and new human-robot interaction models are still missing requirements to achieve extended robot autonomy. To tackle these challenges, we propose RODEO (RObotic DEcentralized Organization), a blockchain-based framework that integrates trust and accountability mechanisms for robots. This paper formalizes Decentralized Autonomous Organizations (DAOs) for service robots. First, it provides a ROS-ETH bridge between the DAO and the robots. Second, it offers templates that enable organizations (e.g., companies, universities) to integrate service robots into their operations. Third, it provides proof-verification mechanisms that allow robot actions to be auditable. In our experimental setup, a mobile robot was deployed as a trash collector in a lab scenario. The robot collects trash and uses a smart bin to sort and dispose of it correctly. Then, the robot submits a proof of the successful operation and is compensated in DAO tokens. Finally, the robot re-invests the acquired funds to purchase battery charging services. Data collected in a three day experiment show that the robot doubled its income and reinvested funds to extend its operating time. The proof validation times of approximately one minute ensured verifiable task execution, while the accumulated robot income successfully funded up to 88 hours of future autonomous operation. The results of this research give insights about how robots and organizations can coordinate tasks and payments with auditable execution proofs and on-chain settlement.
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