在给定信号强度和噪声水平的情况下,以比特每秒为单位给出的最终限制是无差错通信的最大绝对速率。
The resulting limit, given in units of bits per second, is the absolute maximum rate of error-free communication given signal strength and noise level.
结合强降雨的特征,借助3s技术以及网络通信等高新技术,可以提前预报降雨强度,确定受灾区域。
Combining strong rainfall feature, rainfall intensity can be forecast and the affected area can be confirmed based on high and new technology such as 3s and net communication technology.
目前装备的通信车厢体强度和刚性均采用较大安全系数设计,其重量与装载设备总重量的比值一般在1。
Nowadays, large safety coefficients have been adopted for strength and rigidity of the mililary communication vehicle, and the ratio of carriage weight to communication equipment loading is about 1.
为了证明系统能够应用于水下声光通信,进行了对水下声源发出的声波频率和强度的探测实验。
To prove the system can be used in underwater acoustooptic communications, with this system, the acoustic frequency and intensity of underwater sound source are detected.
在高保密强度的通信系统中,流密码是一种广泛采用的重要技术手段。
In the high security communication system, stream cipher as an important technique is widely used.
交通信号控制机(简称信号机),对减轻交警工作强度和维护交通安全畅通起着举足轻重的作用。
The traffic signal controller is important for reducing the work intensity of traffic policemen and for increasing the traffic security of roadway.
光学双稳在光通信、光计算、光传感、以及激光强度控制和光学精密计量技术等方面都有重要应用。
Optical Bistability has been found important applications in many fields such as optical communication, optical computing, optical sensor, laser power control and optical high accuracy measurement.
光纤的高强度是光纤在光通信技术上应用的必要条件。
High strength is a quality requisite to optical fibers for their application to optical communication.
本发明涉及一种用于通过无线电通信的方法,其中接收器(MS)以第一无线电频率接收第一信号并确定该第一信号的接收强度。
The invention relates to a method for wireless communication, in which a receiver (MS) receives a first signal at a first radio frequency and determines the reception level of the first signal.
本发明涉及一种用于通过无线电通信的方法,其中接收器(MS)以第一无线电频率接收第一信号并确定该第一信号的接收强度。
The invention relates to a method for wireless communication, in which a receiver (MS) receives a first signal at a first radio frequency and determines the reception level of the first signal.
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