“嫦娥四号”中继星于2018年6月14日成功进入地月L2点Halo轨道,承担地面测控站与“嫦娥四号”着陆器的数据传输功能。目前“嫦娥四号”中继星处于稀疏观测模式,平均4~5天进行一次观测。分析了2021年1月“嫦娥四号”中继星绕地月L2点的...“嫦娥四号”中继星于2018年6月14日成功进入地月L2点Halo轨道,承担地面测控站与“嫦娥四号”着陆器的数据传输功能。目前“嫦娥四号”中继星处于稀疏观测模式,平均4~5天进行一次观测。分析了2021年1月“嫦娥四号”中继星绕地月L2点的定轨精度,结果表明:中继星绕L2点轨道精度优于2 km,包含有甚长基线干涉测量技术(Very Long Baseline Interferometry,VLBI)时延和时延率的弧段达到百米量级;在有VLBI观测的前提下,合理分配测距和测速弧段的覆盖时段,能在数据覆盖率相同的情况下有效提高轨道精度。展开更多
2018-06嫦娥四号中继星发射任务圆满完成,为2018-12的嫦娥四号月球背面降落任务打下良好的基础,其中甚长基线干涉测量技术(very long baseline interferometry,VLBI)测轨分系统在卫星的定位、变轨等方面起到了重要的作用。统计了嫦娥四...2018-06嫦娥四号中继星发射任务圆满完成,为2018-12的嫦娥四号月球背面降落任务打下良好的基础,其中甚长基线干涉测量技术(very long baseline interferometry,VLBI)测轨分系统在卫星的定位、变轨等方面起到了重要的作用。统计了嫦娥四号中继星任务实时阶段VLBI观测的时延、时延率和定位结果的精度,讨论了定位归算在嫦娥四号中继星轨控弧段实时轨迹监测中的应用。在中继星进入Halo轨道的过程中,能够实时监测到定位归算结果给出的轨道根数变化,以实时监测变轨情况,并通过事后与定轨结果比对,判断定位结果的正确性与准确性,从而为后续飞行任务提供了一种新的Halo轨道实时监测的方法。展开更多
The κ-μ fading model is an advanced channel model in super dense wireless networks.In this paper,we evaluate the performance of the system over κ-μ fading channel in super dense relay networks with consideration o...The κ-μ fading model is an advanced channel model in super dense wireless networks.In this paper,we evaluate the performance of the system over κ-μ fading channel in super dense relay networks with consideration of multiple independent but not necessarily identically distributed(i.n.i.d.) cochannel interference(CCI) under interferencelimited environment.More specifically,we derive a useful and accurate cumulative distribution function(CDF) expression of the end-to-end signal-to-interference plus noise(SINR) ratio.Moreover,we derive novel analytical expressions of the outage probability(OP),average bit error probability(ABEP) and average capacity for binary modulation types and arbitrary positive values of κ-and μ of such system.Furthermore,we propose asymptotic analysis for both the OP and ABEP to give physical insights.A simplified analytical form for the ABEP at high-SNR regimes is provided as well.Finally,the accuracy of the derived expressions is well validated by Monte Carlo simulations.展开更多
An exact average symbol error rate analysis for the distributed dual-hop relay cooperative network with multiple relays in a Nakagami-m fading environment is presented.In the derivation of the moment generation functi...An exact average symbol error rate analysis for the distributed dual-hop relay cooperative network with multiple relays in a Nakagami-m fading environment is presented.In the derivation of the moment generation function of receiver Signal-to-Noise Ratio(SNR),the sectional integral method is used,instead of the cumulative density function method which is ordinarily used by the deduction of the outage probability of S-R-D link.The accurate symbol error rate of a dual-hop relay cooperative network is obtained with the closed-form Moment Genoration Function (MGF) expression.The correctness of the symbol error rate is verified through numerical simulations and is compared with other analytical methods.These deductions clearly show that the distributed cooperative diversity network presented has strong superiorities in overcoming severe fading and can achieve full diversity order.展开更多
Cooperative communication is regarded as a promising technique for improving the reliability of wireless communication links and enhancing the radio coverage simultaneously. Unlike the conventional half-duplex(HD) mod...Cooperative communication is regarded as a promising technique for improving the reliability of wireless communication links and enhancing the radio coverage simultaneously. Unlike the conventional half-duplex(HD) mode relaying techniques,the full-duplex based two-way relaying(FD-TWR) enables data exchanges between two nodes to be completed within a single time-slot,thus resulting in a significant improvement in the spectrum efficiency. In this paper,the channel model of the FD-TWR is first given out,followed by deriving the critical performance metrics,including the received signal-to-interference-plus-noise ratio(SINR),the upper bound of the ergodic capacity and the closedform solution of the proposed FD-TWR under amplify-and-forward(AF) mode. Furthermore,taking the limit of sum-transmit-power into account,we formulate the objective function of the optimal power allocation of FD-TWR as an extreme-value problem by deriving the optimal transmit power for both the source nodes and the relay node. As long as the self-interference(SI) signal in the FD-TWR nodes can be sufficiently suppressed,the proposed scheme is shown to outperform the conventional HD mode in terms of both the ergodic capacity and the outage probability. In addition,regardless of the practical SI power,the proposedFD-TWR is always capable of achieving its best performance with an aid of the proposed optimal power allocation scheme.展开更多
文摘“嫦娥四号”中继星于2018年6月14日成功进入地月L2点Halo轨道,承担地面测控站与“嫦娥四号”着陆器的数据传输功能。目前“嫦娥四号”中继星处于稀疏观测模式,平均4~5天进行一次观测。分析了2021年1月“嫦娥四号”中继星绕地月L2点的定轨精度,结果表明:中继星绕L2点轨道精度优于2 km,包含有甚长基线干涉测量技术(Very Long Baseline Interferometry,VLBI)时延和时延率的弧段达到百米量级;在有VLBI观测的前提下,合理分配测距和测速弧段的覆盖时段,能在数据覆盖率相同的情况下有效提高轨道精度。
文摘2018-06嫦娥四号中继星发射任务圆满完成,为2018-12的嫦娥四号月球背面降落任务打下良好的基础,其中甚长基线干涉测量技术(very long baseline interferometry,VLBI)测轨分系统在卫星的定位、变轨等方面起到了重要的作用。统计了嫦娥四号中继星任务实时阶段VLBI观测的时延、时延率和定位结果的精度,讨论了定位归算在嫦娥四号中继星轨控弧段实时轨迹监测中的应用。在中继星进入Halo轨道的过程中,能够实时监测到定位归算结果给出的轨道根数变化,以实时监测变轨情况,并通过事后与定轨结果比对,判断定位结果的正确性与准确性,从而为后续飞行任务提供了一种新的Halo轨道实时监测的方法。
基金supported by the NSFC project under grant No. 61101237the Fundamental Research Funds for the Central Universities No. 2014JBZ001China Postdoctoral Science Foundation No. 2014M560081
文摘The κ-μ fading model is an advanced channel model in super dense wireless networks.In this paper,we evaluate the performance of the system over κ-μ fading channel in super dense relay networks with consideration of multiple independent but not necessarily identically distributed(i.n.i.d.) cochannel interference(CCI) under interferencelimited environment.More specifically,we derive a useful and accurate cumulative distribution function(CDF) expression of the end-to-end signal-to-interference plus noise(SINR) ratio.Moreover,we derive novel analytical expressions of the outage probability(OP),average bit error probability(ABEP) and average capacity for binary modulation types and arbitrary positive values of κ-and μ of such system.Furthermore,we propose asymptotic analysis for both the OP and ABEP to give physical insights.A simplified analytical form for the ABEP at high-SNR regimes is provided as well.Finally,the accuracy of the derived expressions is well validated by Monte Carlo simulations.
基金supported by Important National Science & Technology Specific Projects under Grant No.CX01011the Important National Science & Technology Specific Projects under Grant No.4101002+2 种基金the National Natural Science Foundation of China under Grants No.61002014,No.60972017,No.60972018the Excellent Young Teachers Program of MOE,PRC under Grant No.2009110120028the Research Fund for the Doctoral Program of Higher Education under Grants No.20091101110019,No.20070007019
文摘An exact average symbol error rate analysis for the distributed dual-hop relay cooperative network with multiple relays in a Nakagami-m fading environment is presented.In the derivation of the moment generation function of receiver Signal-to-Noise Ratio(SNR),the sectional integral method is used,instead of the cumulative density function method which is ordinarily used by the deduction of the outage probability of S-R-D link.The accurate symbol error rate of a dual-hop relay cooperative network is obtained with the closed-form Moment Genoration Function (MGF) expression.The correctness of the symbol error rate is verified through numerical simulations and is compared with other analytical methods.These deductions clearly show that the distributed cooperative diversity network presented has strong superiorities in overcoming severe fading and can achieve full diversity order.
基金supported by the key project of the National Natural Science Foundation of China (No.61431001)5G research program of China Mobile Research Institute (Grant No.[2015] 0615)+1 种基金Key Laboratory of Cognitive Radio and Information Processing,Ministry of Education(Guilin University of Electronic Technology)the Foundation of Beijing Engineering and Technology Center for Convergence Networks and Ubiquitous Services
文摘Cooperative communication is regarded as a promising technique for improving the reliability of wireless communication links and enhancing the radio coverage simultaneously. Unlike the conventional half-duplex(HD) mode relaying techniques,the full-duplex based two-way relaying(FD-TWR) enables data exchanges between two nodes to be completed within a single time-slot,thus resulting in a significant improvement in the spectrum efficiency. In this paper,the channel model of the FD-TWR is first given out,followed by deriving the critical performance metrics,including the received signal-to-interference-plus-noise ratio(SINR),the upper bound of the ergodic capacity and the closedform solution of the proposed FD-TWR under amplify-and-forward(AF) mode. Furthermore,taking the limit of sum-transmit-power into account,we formulate the objective function of the optimal power allocation of FD-TWR as an extreme-value problem by deriving the optimal transmit power for both the source nodes and the relay node. As long as the self-interference(SI) signal in the FD-TWR nodes can be sufficiently suppressed,the proposed scheme is shown to outperform the conventional HD mode in terms of both the ergodic capacity and the outage probability. In addition,regardless of the practical SI power,the proposedFD-TWR is always capable of achieving its best performance with an aid of the proposed optimal power allocation scheme.