基于对双环频率预置技术和谐波混频技术的理论分析,将混频锁相合成方式与高次倍频合成方式相结合,采用鉴相极性可变的非常规设计,提出一种宽带小步进超低相位噪声频率合成器的低成本实现方案,并对合成器的相位噪声和杂散抑制指标进行了...基于对双环频率预置技术和谐波混频技术的理论分析,将混频锁相合成方式与高次倍频合成方式相结合,采用鉴相极性可变的非常规设计,提出一种宽带小步进超低相位噪声频率合成器的低成本实现方案,并对合成器的相位噪声和杂散抑制指标进行了理论分析。试验证明,在8 GHz输出频率下,方案实现了低于-132 d Bc/Hz@10 k Hz的相位噪声和70 d B以上的杂散抑制性能。对宽带超低相位噪声频率合成器的设计具有借鉴意义。展开更多
Changing frequency of RF cavity in SFC is realized by moving short-plate. For a long time, changing frequency depends on manual measurement. In order to realize presetting of frequency precisely, we must precisely mea...Changing frequency of RF cavity in SFC is realized by moving short-plate. For a long time, changing frequency depends on manual measurement. In order to realize presetting of frequency precisely, we must precisely measure the position of short-plate so that to finish the frequency presetting. RF cavity is 5 meters long (shown in Fig.1). When the resonant frequency of RF cavity is changed from 5.8 to 18 MHz, corresponding position will be from 4 300 to 270 mm (shown in Fig.2).展开更多
As the earliest invented and utilized communication approach, shortwave, known as high frequency(HF) communication now experience the deterioration of HF electromagnetic environment. Finding quality frequency in effic...As the earliest invented and utilized communication approach, shortwave, known as high frequency(HF) communication now experience the deterioration of HF electromagnetic environment. Finding quality frequency in efficient manner becomes one of the key challenges in HF communication. Spectrum prediction infers the future spectrum status from history spectrum data by exploring the inherent correlations and regularities. The investigation of HF electromagnetic environment data reveals the correlations and predictability of HF frequency band in both time and frequency domain. To solve this problem, we develop a Spectrum Prediction-based Frequency Band Pre-selection(SP-FBP) for HF communications. The pre-selection of HF frequency band mainly incorporated in prediction of HF spectrum occupancy and prediction of HF usable frequency, which provide the frequency band ranking of spectrum occupancy and alternative frequency for spectrum sensing, respectively. Performance evaluation via real-world HF spectrum data shows that SP-FBP significantly improves the efficiency of finding quality frequency in HF communications.展开更多
文摘基于对双环频率预置技术和谐波混频技术的理论分析,将混频锁相合成方式与高次倍频合成方式相结合,采用鉴相极性可变的非常规设计,提出一种宽带小步进超低相位噪声频率合成器的低成本实现方案,并对合成器的相位噪声和杂散抑制指标进行了理论分析。试验证明,在8 GHz输出频率下,方案实现了低于-132 d Bc/Hz@10 k Hz的相位噪声和70 d B以上的杂散抑制性能。对宽带超低相位噪声频率合成器的设计具有借鉴意义。
文摘Changing frequency of RF cavity in SFC is realized by moving short-plate. For a long time, changing frequency depends on manual measurement. In order to realize presetting of frequency precisely, we must precisely measure the position of short-plate so that to finish the frequency presetting. RF cavity is 5 meters long (shown in Fig.1). When the resonant frequency of RF cavity is changed from 5.8 to 18 MHz, corresponding position will be from 4 300 to 270 mm (shown in Fig.2).
基金the Project of National Natural Science Foundation of China (Grant No. 61471395, No. 61301161, and No. 61501510)partly supported by Natural Science Foundation of Jiangsu Province (Grant No. BK20161125 and No. BK20150717)
文摘As the earliest invented and utilized communication approach, shortwave, known as high frequency(HF) communication now experience the deterioration of HF electromagnetic environment. Finding quality frequency in efficient manner becomes one of the key challenges in HF communication. Spectrum prediction infers the future spectrum status from history spectrum data by exploring the inherent correlations and regularities. The investigation of HF electromagnetic environment data reveals the correlations and predictability of HF frequency band in both time and frequency domain. To solve this problem, we develop a Spectrum Prediction-based Frequency Band Pre-selection(SP-FBP) for HF communications. The pre-selection of HF frequency band mainly incorporated in prediction of HF spectrum occupancy and prediction of HF usable frequency, which provide the frequency band ranking of spectrum occupancy and alternative frequency for spectrum sensing, respectively. Performance evaluation via real-world HF spectrum data shows that SP-FBP significantly improves the efficiency of finding quality frequency in HF communications.