XF-I系统把最先进的EPLRS有效波形用于通信、战术位置定位信息和电子对抗,可提供有力、具备自我修复能力的环境自适应网络。
The XF-I system uses the most advanced EPLRS waveform available for communications, critical position location information and effective electronic counter-countermeasures.
本研究的目的就是在异步通信网络环境中,采用连续的时间戳通信模型,并利用时钟精度差概念和小波除噪算法实现系统中各个计算机之间的自适应时钟同步。
The continuous time-stamp communication model and the wavelet technology were applied to evaluate running precision difference of clocks, in order to reduce the effect of network delay efficiently.
通过这些片上自适应网络元件与体系,将来物联网中的基本通信跟交互设施将可能根据环境跟利用中始终变更的通信须要自主的进行恰当的响应。
Such run time adaptive network on chip will adapt the underlying interconnection infrastructure on demand in response to changing communication requirements imposed by an application and context.
通过这些片上自适应网络元件与体系,将来物联网中的基本通信跟交互设施将可能根据环境跟利用中始终变更的通信须要自主的进行恰当的响应。
Such run time adaptive network on chip will adapt the underlying interconnection infrastructure on demand in response to changing communication requirements imposed by an application and context.
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