In this paper, a multi-hop relay channel model based on unmanned aerial vehicles(UAVs) is established by taking into account of the propagation loss, shadowing, and multi-path fading. Based on the proposed channel mod...In this paper, a multi-hop relay channel model based on unmanned aerial vehicles(UAVs) is established by taking into account of the propagation loss, shadowing, and multi-path fading. Based on the proposed channel model, the cascaded propagation loss of relay link and the cascaded probability density function(PDF) of channel fading are derived. Moreover, the theoretical performance of the UAV-based relay system, i.e., the outage probability, bit error rate(BER), and channel capacity, is also analysed and derived. Simulation results show agreement with theoretical results for the hill, mountain, and sea scenarios, indicating the accuracy of both the simulations and derivations.展开更多
针对信道环境恶劣情况下的数字信号接收,提出了一种基于随机共振理论降低二进制相移键控信号相干接收误码率的新方法。通过与常规解调方法的对比仿真,发现基于随机共振非线性双稳系统解调的2PSK信号的误码率在低信噪比情况下有明显降低...针对信道环境恶劣情况下的数字信号接收,提出了一种基于随机共振理论降低二进制相移键控信号相干接收误码率的新方法。通过与常规解调方法的对比仿真,发现基于随机共振非线性双稳系统解调的2PSK信号的误码率在低信噪比情况下有明显降低。特别是信噪比在-14.4 d B到-5.2 d B范围内时,误码率曲线下降很快,在-7.4 d B时较传统线性解调系统误码率可降低20.1%。展开更多
基金supported by the National Key Scientific Instrument and Equipment Development Project(Grant No.2013YQ200607)China NSF Grants(Grant No.61631020)+2 种基金Aeronautical Science Foundation of China(Grant No.2017ZC52021)Fundamental Research Funds for the Central Universities(Grant No.NJ20160027)Open Foundation for Graduate Innovation of NUAA(Grant No.kfjj20160412 and kfjj20170405)
文摘In this paper, a multi-hop relay channel model based on unmanned aerial vehicles(UAVs) is established by taking into account of the propagation loss, shadowing, and multi-path fading. Based on the proposed channel model, the cascaded propagation loss of relay link and the cascaded probability density function(PDF) of channel fading are derived. Moreover, the theoretical performance of the UAV-based relay system, i.e., the outage probability, bit error rate(BER), and channel capacity, is also analysed and derived. Simulation results show agreement with theoretical results for the hill, mountain, and sea scenarios, indicating the accuracy of both the simulations and derivations.
文摘针对信道环境恶劣情况下的数字信号接收,提出了一种基于随机共振理论降低二进制相移键控信号相干接收误码率的新方法。通过与常规解调方法的对比仿真,发现基于随机共振非线性双稳系统解调的2PSK信号的误码率在低信噪比情况下有明显降低。特别是信噪比在-14.4 d B到-5.2 d B范围内时,误码率曲线下降很快,在-7.4 d B时较传统线性解调系统误码率可降低20.1%。