Periodic Reporting for period 2 - ENDORSE (Safe, Efficient and Integrated Indoor Robotic Fleet for Logistic Applications in Healthcare and Commercial Spaces)
Período documentado: 2020-10-01 hasta 2022-09-30
The modular architecture was successfully demonstrated and validated by the integration of an e-diagnostic support module, equipped with non-invasive sensors/devices, and the Electronic Health Records (EHR) interfacing, thus serving as an autonomous mobile e-health diagnostic robotic module.
The latter mobile e-health diagnostic module allows remote patient monitoring and vital signs acquisition and facilitates full connectivity to a dedicated inpatient-monitoring platform. In addition, the data produced by the e-diagnostic module diagnostic exam report are securely forwarded to update and complement the patient’s cloud-based EHR.
The integrated ENDORSE solution comprising a fleet of autonomous mobile robots and the ENDORSE Fleet Management System has been deployed and successfully tested in full-scale lab-controlled environment replicating typical health centres. The evaluation conducted emphasised the good performance of the ENDORSE solution as regarding time-to-deployment and operational dependability.
The consortium developed the innovative mobile e-health diagnostic module (both hardware and software components) to allow remote patient monitoring and vital signs acquisition, as well as the integration software to access the Electronic Health Record (EHR) from the mobile e-diagnostic module. The EHR builds on the concept of the Patient Summary (PS), an EU wide initiative to harmonize the sharing of medical data across member states and thus to facilitate cross-border healthcare provision. Extending the range of facilitated logistic applications, the consortium adapted an autonomous mobile robot by including a lifting unit and an elevation platform that allows the transport of trolleys. Moreover, to optimize the range of services offered, ENDORSE partners developed a cloud-based fleet management system for multi-robot task allocation and planning as well as cost-effective fleet operation supervision. In terms of enhancing Human-Robot Interaction, algorithms for intuitive and transparent human-aware navigation capabilities were developed, leveraging deep-learning techniques for object detection and model predictive control, as well as infrastructure-less solutions for robust global localization for multi-robot navigation using square fiducial markers detection and the integration of the Anyplace Indoor Navigation Service into the Robot Operating System (ROS).
The results achieved were documented and published in scientific publications. Besides, prospective exploitation plans were elaborated for mature ENDORSE components.
The ENDORSE mobile e-health diagnostic robotic module minimizes physical interaction. Therefore, it allows risk-free remote patient monitoring and vital signs acquisition that are securely forwarded to update and complement the patient’s EHR. The ENDORSE mobile e-health robot may also relieve hospital staff as it facilitates their daily tasks pertaining to physiological measurements monitoring. Finally, the ENDORSE solution offers a cost-effective multi-robot solution for logistics and health services in the healthcare and commercial spaces.