A 2-GHz radio frequency transceiver is presented and implemented for third generation mobile communications using wide-band code division multiple access (WCDMA) scheme. Performance measuring systems are introduced ...A 2-GHz radio frequency transceiver is presented and implemented for third generation mobile communications using wide-band code division multiple access (WCDMA) scheme. Performance measuring systems are introduced for transmitter channel and receiver sensitivity, respectively. The transceiver achieves maximum output power of 22 dBm, dynamic range of 85 dB, adjacent channel power rejection ratio (ACPR) of -41dB@5MHz, and receiver sensitivity of-119.6 dBm for 128-kb/s data at 3.84-Mcps spreading rate. The measured results indicate the conformity to the required commercial 2.0-GHz WCDMA specification and 3GPP requirements.展开更多
光纤矢量水听器(FOVH)以其低频灵敏度高,动态范围大,抗电磁干扰,易轻型化等诸多优势,成为新型矢量水听器的一个发展热点。针对线阵列应用,开展了光纤干涉碟型矢量水听器的仿真分析和研制工作。有限元分析采用光纤等效层方法(FLEM)和光...光纤矢量水听器(FOVH)以其低频灵敏度高,动态范围大,抗电磁干扰,易轻型化等诸多优势,成为新型矢量水听器的一个发展热点。针对线阵列应用,开展了光纤干涉碟型矢量水听器的仿真分析和研制工作。有限元分析采用光纤等效层方法(FLEM)和光纤细化结构方法(FLDM)分别对系统的性能进行预报,研制出了光纤碟型矢量水听器样品,并进行了全面的测试。实验结果表明,所研制的矢量水听器样品在100~1000 Hz的工作频带内,矢量通道的等效声压相移灵敏度为-182 d B@100 Hz^-158.5 d B@1000 Hz(ref.1 rad/μPa),串扰小于-30 d B,有良好的矢量性。展开更多
提出将正交频分多路复用(orthogonal frequency division multiplexing,OFDM)技术应用到电力光纤通信系统中,以提高系统的可靠性和稳定性。针对光纤信道特性在频域上变化缓慢且相邻的信道特性高度相关的特点,在基于训练序列的信道估计...提出将正交频分多路复用(orthogonal frequency division multiplexing,OFDM)技术应用到电力光纤通信系统中,以提高系统的可靠性和稳定性。针对光纤信道特性在频域上变化缓慢且相邻的信道特性高度相关的特点,在基于训练序列的信道估计中采用频域滑动平均方法来提高信道估计的准确性。仿真结果表明,相对于原始的信道估计方法,采用频域滑动平均信道估计方法后OFDM信号接收灵敏度提高1.5 dB,且相对背靠背时基本不会引入功率代价。展开更多
文摘A 2-GHz radio frequency transceiver is presented and implemented for third generation mobile communications using wide-band code division multiple access (WCDMA) scheme. Performance measuring systems are introduced for transmitter channel and receiver sensitivity, respectively. The transceiver achieves maximum output power of 22 dBm, dynamic range of 85 dB, adjacent channel power rejection ratio (ACPR) of -41dB@5MHz, and receiver sensitivity of-119.6 dBm for 128-kb/s data at 3.84-Mcps spreading rate. The measured results indicate the conformity to the required commercial 2.0-GHz WCDMA specification and 3GPP requirements.
文摘光纤矢量水听器(FOVH)以其低频灵敏度高,动态范围大,抗电磁干扰,易轻型化等诸多优势,成为新型矢量水听器的一个发展热点。针对线阵列应用,开展了光纤干涉碟型矢量水听器的仿真分析和研制工作。有限元分析采用光纤等效层方法(FLEM)和光纤细化结构方法(FLDM)分别对系统的性能进行预报,研制出了光纤碟型矢量水听器样品,并进行了全面的测试。实验结果表明,所研制的矢量水听器样品在100~1000 Hz的工作频带内,矢量通道的等效声压相移灵敏度为-182 d B@100 Hz^-158.5 d B@1000 Hz(ref.1 rad/μPa),串扰小于-30 d B,有良好的矢量性。
文摘提出将正交频分多路复用(orthogonal frequency division multiplexing,OFDM)技术应用到电力光纤通信系统中,以提高系统的可靠性和稳定性。针对光纤信道特性在频域上变化缓慢且相邻的信道特性高度相关的特点,在基于训练序列的信道估计中采用频域滑动平均方法来提高信道估计的准确性。仿真结果表明,相对于原始的信道估计方法,采用频域滑动平均信道估计方法后OFDM信号接收灵敏度提高1.5 dB,且相对背靠背时基本不会引入功率代价。