Mobile robots have disrupted the material handling industry which is witnessing radical changes. The requirement for enhanced automation across various industry segments often entails mobile robotic systems operating in logistics facilities with little/no infrastructure. In such environments, out-of-box low-cost robotic solutions are desirable. Wireless connectivity plays a crucial role in successful operation of such mobile robotic systems. A wireless mesh network of mobile robots is an attractive solution; however, a number of system-level challenges create unique and stringent service requirements. The focus of this paper is the role of Bluetooth mesh technology, which is the latest addition to the Internet-of-Things (IoT) connectivity landscape, in addressing the challenges of infrastructure-less connectivity for mobile robotic systems. It articulates the key system-level design challenges from communication, control, cooperation, coverage, security, and navigation/localization perspectives, and explores different capabilities of Bluetooth mesh technology for such challenges. It also provides performance insights through real-world experimental evaluation of Bluetooth mesh while investigating its differentiating features against competing solutions.
翻译:移动机器人破坏了正在经历巨大变化的材料处理行业。各行业的强化自动化要求往往要求在物流设施中运行很少/没有基础设施的移动机器人系统。在这种环境下,需要采用不设箱的低成本机器人解决方案。无线连通在移动机器人系统的成功运行中发挥着关键作用。移动机器人的无线网状网络是一个有吸引力的解决办法;然而,系统层面的一些挑战产生了独特和严格的服务要求。本文件的重点是蓝牙网状技术的作用,这是对互联网Things(IoT)连通面貌的最新补充,它有助于应对移动机器人系统缺乏基础设施连通性的挑战。它阐述了通信、控制、合作、覆盖、安全、导航/定位等关键系统层面的设计挑战,并探讨了蓝牙网状技术应对此类挑战的不同能力。它通过对蓝牙网状进行真实世界的实验性评估,在调查其特征与竞争性解决方案的区别时,通过对蓝牙网状图网状进行实际评估,提供实绩洞察。