Shin D I, Shin K H, Kim I K, Park K S, Lee T S, Kim S I, Lim K S, Huh S J
Department of Biomedical Engineering, Asan Medical Center and University of Ulsan College of Medicine, 388-1 PungNap-Dong, SongPa-Gu, 138-736 Seoul, Republic of Korea.
Med Eng Phys. 2005 Oct;27(8):713-6. doi: 10.1016/j.medengphy.2004.12.010. Epub 2005 Feb 26.
We have created a pilot wireless network for the convenient monitoring of temperature and humidity of infant incubators. This system combines infrared and radio frequency (RF) communication in order to minimize the power consumption of slave devices, and we therefore call it a hybrid wireless network. The slave module installed in the infant incubator receives the calling signal from the host with an infrared receiver, and sends temperature and humidity data to the host with an RF transmitter. The power consumption of the host system is not critical, and hence it uses the maximum power of infrared transmission and continuously operating RF receiver. In our test implementation, we included four slave devices. The PC calls each slave device every second and then waits for 6 s, resulting in a total scan period of 10 s. Slave devices receive the calling signals and transmit three data values (temperature, moisture, and skin temperature); their power demand is 1 mW, and can run for about 1000 h on four AA-size nickel-hydride batteries.
我们创建了一个试点无线网络,用于方便地监测婴儿培养箱的温度和湿度。该系统结合了红外和射频(RF)通信,以尽量减少从设备的功耗,因此我们称其为混合无线网络。安装在婴儿培养箱中的从模块通过红外接收器接收来自主机的呼叫信号,并通过射频发射器将温度和湿度数据发送到主机。主机系统的功耗并不关键,因此它使用红外传输的最大功率和持续运行的射频接收器。在我们的测试实现中,我们包括了四个从设备。PC每秒呼叫每个从设备,然后等待6秒,总扫描周期为10秒。从设备接收呼叫信号并传输三个数据值(温度、湿度和皮肤温度);它们的功率需求为1毫瓦,使用四节AA尺寸的镍氢电池可以运行约1000小时。