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Saving energy for the data collection point in WBAN network 为WBAN网络中的数据采集点节省能源
Pub Date : 1900-01-01 DOI: 10.1117/12.2287076
Toan Nguyen-Duc, E. Kamioka
Wireless sensor networking (WSN) has been rapidly developed and become essential in various domains including health care systems. Such systems use WSN to collect real-time medical sensed data, aiming at improving the patient safety. For instance, patients suffered from adverse events, i.e., cardiac or respiratory arrests, are monitored so as to prevent them from getting harm. Sensors are placed on, in or near the patients’ body to continuously collect sensing data such as the electrocardiograms, blood oxygenation, breathing, and heart rate. In this case, the sensors form a subcategory of WSN called wireless body area network (WBAN). In WBAN, sensing data are sent to one or more data collection points called personal server (PS). The role of PS is important since it forwards sensed data, to a medical server via a Bluetooth/WLAN connection in real time to support storage of information and real-time diagnosis, the device can also issue a notification of an emergency status. Since PS is a battery-based device, when its battery is empty, it will disconnect the sensed medical data with the rest network. To best of our knowledge, very few studies that focus on saving energy for the PS. To this end, this work investigates the trade-off between energy consumption for wireless communication and the amount of sensing data. An energy consumption model for wireless communication has been proposed based on direct measurement using real testbed. According to our findings, it is possible to save energy for the PS by selecting suitable wireless technology to be used based on the amount of data to be transmitted.
无线传感器网络(WSN)发展迅速,在包括医疗保健系统在内的各个领域都发挥着重要作用。该系统利用无线传感器网络采集实时医疗传感数据,旨在提高患者的安全。例如,对患有心脏或呼吸骤停等不良事件的患者进行监测,以防止他们受到伤害。传感器被放置在病人身上、身体内部或身体附近,以持续收集诸如心电图、血氧、呼吸和心率等传感数据。在这种情况下,传感器形成了WSN的一个子类别,称为无线体域网络(WBAN)。在WBAN中,传感数据被发送到一个或多个数据收集点,称为个人服务器(PS)。PS的作用非常重要,因为它通过蓝牙/WLAN连接实时将感测数据转发到医疗服务器,以支持信息存储和实时诊断,设备还可以发出紧急状态通知。由于PS是一个基于电池的设备,当它的电池耗尽时,它将断开与其他网络的传感医疗数据。据我们所知,很少有研究关注于为PS节省能源。为此,本工作调查了无线通信能耗与传感数据量之间的权衡。提出了一种基于实测台直接测量的无线通信能耗模型。根据我们的研究结果,根据要传输的数据量选择合适的无线技术,可以为PS节省能量。
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引用次数: 0
Reliable actuators for twin rotor MIMO system 可靠的双转子MIMO系统执行器
Pub Date : 1900-01-01 DOI: 10.1117/12.2288123
V. S. Rao, George V.I, Surekha Kamath, Shreesha C.
Twin Rotor MIMO System (TRMS) is a bench mark system to test flight control algorithms. One of the perturbations on TRMS which is likely to affect the control system is actuator failure. Therefore, there is a need for a reliable control system, which includes H infinity controller along with redundant actuators. Reliable control refers to the design of a control system to tolerate failures of a certain set of actuators or sensors while retaining desired control system properties. Output of reliable controller has to be transferred to the redundant actuator effectively to make the TRMS reliable even under actual actuator failure.
双旋翼MIMO系统(TRMS)是测试飞行控制算法的基准系统。TRMS中可能影响控制系统的扰动之一是致动器失效。因此,需要一种可靠的控制系统,该系统包括H∞控制器和冗余执行器。可靠控制是指控制系统的设计能够容忍某组执行器或传感器的故障,同时保持所需的控制系统特性。可靠控制器的输出必须有效地传递给冗余执行器,使TRMS在执行器实际故障时仍然可靠。
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引用次数: 2
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International Conference on Wireless and Optical Communications
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