Anjum Mohd, Shahab Sana, Whangbo Taegkeun, Ahmad Shabir
Department of Computer Engineering, Aligarh Muslim University, Aligarh, 202002, India.
Department of Business Administration, College of Business Administration, Princess Nourah Bint Abdulrahman University, PO Box 84428, Riyadh, 11671, Saudi Arabia.
Heliyon. 2023 Jul 28;9(8):e18783. doi: 10.1016/j.heliyon.2023.e18783. eCollection 2023 Aug.
Wearable Sensors (WSs) are widely used in healthcare applications to monitor patient health. During the data transmission, dissemination requires additional time to transmit the details with minimum computation difficulties. The existing techniques consume high overloaded while transmitting data in healthcare applications. The research problem is overcome by applying the non-delay-tolerant dissemination technique (NDTDT) to prevent overloaded dissemination and augment immediate, swift message delivery. The dissemination techniques utilize the intelligent decision-making process to provide the accumulated details to the healthcare center. The proposed approach is reliable in mitigating the errors due to inconsistent and discrete sensing intervals between the WSs. The constraints due to delay and interrupted transmission losses are reduced by selecting appropriate slots for WS information handling. This technique aims at maximizing the delivery of accumulated WS information through non-submissive or underlay dissemination. The method is designed to reduce dissemination delay and maximize successful message delivery. Two variations, sensors and data flows, validate the proposed NDTDT system's performance. The model increases the delivery rate by 0.91% and 0.932%, the dissemination probability by 0.964% and 0.98%, and the final metrics involved are an average delay of 12.78 ms and 11.67 ms.
可穿戴传感器(WSs)在医疗保健应用中被广泛用于监测患者健康状况。在数据传输过程中,传播需要额外的时间来传输细节,同时将计算难度降至最低。在医疗保健应用中传输数据时,现有技术消耗的负载过高。通过应用非延迟容忍传播技术(NDTDT)来防止过载传播并增强即时、快速的消息传递,克服了这一研究问题。传播技术利用智能决策过程将累积的细节提供给医疗中心。所提出的方法在减轻由于WSs之间不一致和离散的传感间隔而导致的误差方面是可靠的。通过为WS信息处理选择合适的时隙,减少了由于延迟和传输中断损失造成的约束。该技术旨在通过非顺从或底层传播来最大化累积的WS信息的传递。该方法旨在减少传播延迟并最大化成功消息传递。传感器和数据流这两种变体验证了所提出的NDTDT系统的性能。该模型将传递率提高了0.91%和0.932%,传播概率提高了0.964%和0.98%,最终涉及的指标是平均延迟为12.78毫秒和11.67毫秒。