Self-adaptation approaches usually rely on closed-loop controllers that avoid human intervention from adaptation. While such fully automated approaches have proven successful in many application domains, there are situations where human involvement in the adaptation process is beneficial or even necessary. For such "human-in-the-loop" adaptive systems, two major challenges, namely transparency and controllability, have to be addressed to include the human in the self-adaptation loop. Transparency means that relevant context information about the adaptive systems and its context is represented based on a digital twin enabling the human an immersive and realistic view. Concerning controllability, the decision-making and adaptation operations should be managed in a natural and interactive way. As existing human-in-the-loop adaptation approaches do not fully cover these aspects, we investigate alternative human-in-the-loop strategies by using a combination of digital twins and virtual reality (VR) interfaces. Based on the concept of the digital twin, we represent a self-adaptive system and its respective context in a virtual environment. With the help of a VR interface, we support an immersive and realistic human involvement in the self-adaptation loop by mirroring the physical entities of the real world to the VR interface. For integrating the human in the decision-making and adaptation process, we have implemented and analyzed two different human-in-the-loop strategies in VR: a procedural control where the human can control the decision making-process and adaptations through VR interactions (human-controlled) and a declarative control where the human specifies the goal state and the configuration is delegated to an AI planner (mixed-initiative). We illustrate and evaluate our approach based on an autonomic robot system that is accessible and controlled through a VR interface.
翻译:自我适应方法通常依靠闭路控制器,避免人类的适应性。虽然这种完全自动化的方法在许多应用领域证明是成功的,但在有些情况下,人类参与适应进程是有益甚至必要的。对于这种“在环人”适应系统,必须解决两大挑战,即透明度和可控性,才能将人纳入自适应循环。透明度意味着,适应系统及其上下文的相关背景信息是以数字双对关系为基础表达的,使人类能够进入隐蔽和现实的视角。在可控性方面,决策和适应行动应当以自然和互动的方式管理。由于现有的“在环人”适应进程并不完全覆盖这些方面,因此,我们必须通过将数字双胞胎和虚拟现实现实(VR)界面相结合来调查替代的“在人”组合战略。基于数字双人的概念,我们代表一个自我适应系统,在虚拟环境中,我们代表着各自的自我适应环境。在 VR 界面的帮助下,我们支持一个沉路和现实的人类决策互动关系,我们用真实的、真实的、真实的、真实的、真实的、真实的、真实的、真实的、真实的、真实的、真实的、对立的、对立的、对立的、对立的、人类的、对立的、过程的、对立的、对立的、对立的、对立的系统的、对立的、对立过程的、人类的、对立的、对立过程的、过程的、对立的、对立的、对立的系统的系统的系统的、对立的系统进行自我的、对立的、对立的、对立的、对等的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对等的、对等的、对等的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对立的、对