为了降低长期演进技术增强(long term evolution-advanced,LTE-A)网络中资源分配时的功率消耗,提高小区边缘用户频谱利用率,提升系统吞吐量,提出了LTE-A网络中基于下行协作多点传输(coordinated multi-point transmission/reception,Co...为了降低长期演进技术增强(long term evolution-advanced,LTE-A)网络中资源分配时的功率消耗,提高小区边缘用户频谱利用率,提升系统吞吐量,提出了LTE-A网络中基于下行协作多点传输(coordinated multi-point transmission/reception,CoMP)技术的跨层功率分配优化方法。该方法在传统功率分配方法的基础上引入了联合处理(joint processing/transmission,JP)技术,并对其进行了分析;接着将无线链路控制(radio link control,RLC)层的用户队列状态信息情况考虑到物理层的功率分配算法模块中,建立了新的跨层功率分配方案,并且使用了遗传算法对该方案进行求解;仿真结果表明和传统的几种方法比较起来,有效提高了小区平均频谱效率和边缘频谱效率,减少了功率浪费。展开更多
In this paper, we study utilitybased resource allocation for users supporting multiple services in a LTEA system with coordinated multipoint transmission for singleuser multiinput multioutput (CoMPSUMIMO). We design...In this paper, we study utilitybased resource allocation for users supporting multiple services in a LTEA system with coordinated multipoint transmission for singleuser multiinput multioutput (CoMPSUMIMO). We designed Joint Transmission Power Control (JTPC) for the selected clusters for minimizing power consumption in LTEA systems. The objective of JTPC is to calculate the optimal transmission power for each scheduled user and subcarrier. Moreover, based on the convex optimization theory, we propose the dynamic sector selection method in which the average sector throughput and celledge users (UEs) rates are performed to achieve the optimal solution. Simulation results show that the system performance achieved by using the proposed suboptimal algorithm is close to that achieved by the dual decomposition method.展开更多
An angular light-scattering measurement (ALSM) method combined with the probability density function-bmsed ant colony optimization algorithm (PDF-ACO) is proposed for retrieval of aerosol optical constants. An optimal...An angular light-scattering measurement (ALSM) method combined with the probability density function-bmsed ant colony optimization algorithm (PDF-ACO) is proposed for retrieval of aerosol optical constants. An optimal measurement angle selection method using a principal component analysis (PCA) approach is developed to improve retrieval accuracy. Results indicate that optimized angle selection can ensure retrieval accuracy. The aerosol optical constants over Beijing, China, which are available from the Aerosol Robotic Network (AERONET), are then rec on structed. The ALSM method's con vergence properties are also studied via comparison w让h those of the light reflection-transmittance measurement (LRTM) method. Results retrieved using the ALSM method show better convergence speed and accuracy than those retrieved using the LRTM method because the ALSM method does not require solution of the radiative transfer equation and allows more useful signals to be obtained. Additionally, the inverse accuracy of the refractive index results is better than that of the absorption index results;this is attributed to differences between the monodromic characteristics of the refractive index and absorption index retrieval results. All results confirm that the combination of the ALSM method w让h the PDF-ACO algorithm and the optimal measurement angle selection method provides effective and reliable aerosol optical constant reconstructio n.展开更多
文摘为了降低长期演进技术增强(long term evolution-advanced,LTE-A)网络中资源分配时的功率消耗,提高小区边缘用户频谱利用率,提升系统吞吐量,提出了LTE-A网络中基于下行协作多点传输(coordinated multi-point transmission/reception,CoMP)技术的跨层功率分配优化方法。该方法在传统功率分配方法的基础上引入了联合处理(joint processing/transmission,JP)技术,并对其进行了分析;接着将无线链路控制(radio link control,RLC)层的用户队列状态信息情况考虑到物理层的功率分配算法模块中,建立了新的跨层功率分配方案,并且使用了遗传算法对该方案进行求解;仿真结果表明和传统的几种方法比较起来,有效提高了小区平均频谱效率和边缘频谱效率,减少了功率浪费。
基金partially supported by the Fundamental Research Funds for the Central Universities under Grant No.2012RC0401
文摘In this paper, we study utilitybased resource allocation for users supporting multiple services in a LTEA system with coordinated multipoint transmission for singleuser multiinput multioutput (CoMPSUMIMO). We designed Joint Transmission Power Control (JTPC) for the selected clusters for minimizing power consumption in LTEA systems. The objective of JTPC is to calculate the optimal transmission power for each scheduled user and subcarrier. Moreover, based on the convex optimization theory, we propose the dynamic sector selection method in which the average sector throughput and celledge users (UEs) rates are performed to achieve the optimal solution. Simulation results show that the system performance achieved by using the proposed suboptimal algorithm is close to that achieved by the dual decomposition method.
基金the Jiangsu Provin-cial Natural Science Foundation (grant numbers BK20170800, BK20160794)the Fundamental Research Funds for the Central Universities (grant number 1022-YAH16051)and the National Natural Science Foundation of China (grant number 51606095).
文摘An angular light-scattering measurement (ALSM) method combined with the probability density function-bmsed ant colony optimization algorithm (PDF-ACO) is proposed for retrieval of aerosol optical constants. An optimal measurement angle selection method using a principal component analysis (PCA) approach is developed to improve retrieval accuracy. Results indicate that optimized angle selection can ensure retrieval accuracy. The aerosol optical constants over Beijing, China, which are available from the Aerosol Robotic Network (AERONET), are then rec on structed. The ALSM method's con vergence properties are also studied via comparison w让h those of the light reflection-transmittance measurement (LRTM) method. Results retrieved using the ALSM method show better convergence speed and accuracy than those retrieved using the LRTM method because the ALSM method does not require solution of the radiative transfer equation and allows more useful signals to be obtained. Additionally, the inverse accuracy of the refractive index results is better than that of the absorption index results;this is attributed to differences between the monodromic characteristics of the refractive index and absorption index retrieval results. All results confirm that the combination of the ALSM method w让h the PDF-ACO algorithm and the optimal measurement angle selection method provides effective and reliable aerosol optical constant reconstructio n.