Relay-aided device-to-device (D2D) communication is a promising technology for the next-generation cellular network. We study the transmission schemes for an amplify-and-forward relay-aided D2D system which has multip...Relay-aided device-to-device (D2D) communication is a promising technology for the next-generation cellular network. We study the transmission schemes for an amplify-and-forward relay-aided D2D system which has multiple antennas. To circumvent the prohibitive complexity problem of traditional maximum likelihood (ML) detection for full-rate space-time block code (FSTBC) transmission, two low-complexity detection methods are proposed, i.e., the detection methods with the ML-combining (MLC) algorithm and the joint conditional ML (JCML)detector. Particularly, the method with the JCML detector reduces detection delay at the cost of more storage and performs well with parallel implementation. Simulation results indicate that the proposed detection methods achieve a symbol error probability similar to that of the traditional ML detector for FSTBC transmission but with less complexity, and the performance of FSTBC transmission is significantly better than that of spatial multiplexing transmission. Diversity analysis for the proposed detection methods is also demonstrated by simulations.展开更多
在“双碳”背景下,风电作为零碳电力和新能源发电的主力军,在助力社会全面绿色低碳转型方面发挥了关键性作用。在保证发电稳定的前提下实现风能的最大化利用,提升风力发电系统发电量至为重要。文中针对永磁同一步风力发电系统的最大功...在“双碳”背景下,风电作为零碳电力和新能源发电的主力军,在助力社会全面绿色低碳转型方面发挥了关键性作用。在保证发电稳定的前提下实现风能的最大化利用,提升风力发电系统发电量至为重要。文中针对永磁同一步风力发电系统的最大功率跟踪(maximum power point tracking, MPPT)问题进行研究。首先建立了永磁同步风力发电系统的机理仿真模型,用两电平双PWM全功率换流器连接风力发电机与电网。然后基于以上模型,分别设计了整数阶PI控制器、分数阶PI"控制器、模糊分数阶PP控制器以实现MPPT控制。最后对以上控制策略进行了仿真研究。结果表明,无论在阶跃风速还是随机风速下,模糊分数阶PU控制器相较于其他两种均具有更出色的MPPT性能与更强的鲁棒性。展开更多
为研究分析实施轨道交通预约进站机制对乘客出行效率的影响,通过对乘客乘坐轨道交通全过程进行仿真推演,选取北京轨道交通早高峰时段预约进站试点沙河站所在线路——昌平线作为研究对象,通过获取自动售检票(automatic fare collection, ...为研究分析实施轨道交通预约进站机制对乘客出行效率的影响,通过对乘客乘坐轨道交通全过程进行仿真推演,选取北京轨道交通早高峰时段预约进站试点沙河站所在线路——昌平线作为研究对象,通过获取自动售检票(automatic fare collection, AFC)刷卡数据和列车运行方案对其进行实例分析。结果表明,相较于常规排队进站方式,预约进站机制可有效减少乘客的站外排队时间,并且随着预约人数占所有进站乘客数比例的增加,乘客站外等待时间减少效果更加显著;同时可提高相应列车的区间满载率,这是由于将部分在站外等待的乘客调整至其他时段进站,提高了列车资源利用率,在一定程度上分散乘客需求,但前提是部分乘客的出行习惯将被改变。仿真结果可为各大城市轨道交通车站实施更大规模的预约进站机制提供理论支持。展开更多
基金supported by the National Natural Science Foundation of China(No.61601477)
文摘Relay-aided device-to-device (D2D) communication is a promising technology for the next-generation cellular network. We study the transmission schemes for an amplify-and-forward relay-aided D2D system which has multiple antennas. To circumvent the prohibitive complexity problem of traditional maximum likelihood (ML) detection for full-rate space-time block code (FSTBC) transmission, two low-complexity detection methods are proposed, i.e., the detection methods with the ML-combining (MLC) algorithm and the joint conditional ML (JCML)detector. Particularly, the method with the JCML detector reduces detection delay at the cost of more storage and performs well with parallel implementation. Simulation results indicate that the proposed detection methods achieve a symbol error probability similar to that of the traditional ML detector for FSTBC transmission but with less complexity, and the performance of FSTBC transmission is significantly better than that of spatial multiplexing transmission. Diversity analysis for the proposed detection methods is also demonstrated by simulations.
文摘在“双碳”背景下,风电作为零碳电力和新能源发电的主力军,在助力社会全面绿色低碳转型方面发挥了关键性作用。在保证发电稳定的前提下实现风能的最大化利用,提升风力发电系统发电量至为重要。文中针对永磁同一步风力发电系统的最大功率跟踪(maximum power point tracking, MPPT)问题进行研究。首先建立了永磁同步风力发电系统的机理仿真模型,用两电平双PWM全功率换流器连接风力发电机与电网。然后基于以上模型,分别设计了整数阶PI控制器、分数阶PI"控制器、模糊分数阶PP控制器以实现MPPT控制。最后对以上控制策略进行了仿真研究。结果表明,无论在阶跃风速还是随机风速下,模糊分数阶PU控制器相较于其他两种均具有更出色的MPPT性能与更强的鲁棒性。
文摘为研究分析实施轨道交通预约进站机制对乘客出行效率的影响,通过对乘客乘坐轨道交通全过程进行仿真推演,选取北京轨道交通早高峰时段预约进站试点沙河站所在线路——昌平线作为研究对象,通过获取自动售检票(automatic fare collection, AFC)刷卡数据和列车运行方案对其进行实例分析。结果表明,相较于常规排队进站方式,预约进站机制可有效减少乘客的站外排队时间,并且随着预约人数占所有进站乘客数比例的增加,乘客站外等待时间减少效果更加显著;同时可提高相应列车的区间满载率,这是由于将部分在站外等待的乘客调整至其他时段进站,提高了列车资源利用率,在一定程度上分散乘客需求,但前提是部分乘客的出行习惯将被改变。仿真结果可为各大城市轨道交通车站实施更大规模的预约进站机制提供理论支持。