This article deals with picture excellence examination by different parameters utilizing uni-level Haar wavelet transmission in excess of remote channel. The quality is analyzed based on power. The goal is towards red...This article deals with picture excellence examination by different parameters utilizing uni-level Haar wavelet transmission in excess of remote channel. The quality is analyzed based on power. The goal is towards reducing absolute power assigned in favour of picture compression and communication, while power in favour of every bit is reserved at prearranged value. Two Power Algorithms were presented. The greatest iterative power control calculation and Minimum Power Adaptation Algorithm (MPAA) are proposed. Those algorithms methodology was utilized for improving the aggregate power dispensed for multimedia such as picture because of input compression and transmission focus towards a settled bit source mutilation. Simulations were performed utilizing Haar wavelet than Additive White Gaussian Ration (AWGN) channel. Different picture excellence parameters, for example, Peak Signal to Noise Ratio (PSNR), M-Normalized Cross-Correla- tion, Average Difference;Structural Content parameters, for example, Maximum Difference, Normalized Absolute Error, Elapsed Time, CPU time, demonstrate a improved presentation with MPAA, Maximum Power Adaptation Algorithms (MAPAA) instead of Conventional Power Adaptation Algorithm (CPAA).展开更多
随着工业数字化转型的深入,数据安全和业务连续性成为企业关注的焦点。本文旨在探讨工业数据安全的现状、面临的威胁以及满足等保2.0(网络安全等级保护2.0)背景下康吉森Uni-BRS(智能灾备系统)有效应对策略及解决方案。本文通过分析Uni-...随着工业数字化转型的深入,数据安全和业务连续性成为企业关注的焦点。本文旨在探讨工业数据安全的现状、面临的威胁以及满足等保2.0(网络安全等级保护2.0)背景下康吉森Uni-BRS(智能灾备系统)有效应对策略及解决方案。本文通过分析Uni-BRS的应用案例,展示了如何通过先进的技术手段提高数据保护质量和业务连续性管理。研究发现,Uni-BRS通过全场景应用级灾备、微秒级CDP(Continuous Data Protection,数据连续性保护)、自动化验证告警等功能,有效应对了备份环境复杂多样、数据验证难、应急容灾挑战大和重建恢复难度高等挑战。本文建议企业应重视灾备系统的建设,以确保数据安全和业务连续性。展开更多
为提升暗室吸波工程的设计能力,运用镜像射线跟踪法对10 m法电波暗室进行仿真设计,通过合理布置吸波材料,考虑一次反射和二次反射对静区的影响,计算了不同极化方式下静区的反射电平、归一化场地衰减和场均匀性。结果表明垂直极化和水平...为提升暗室吸波工程的设计能力,运用镜像射线跟踪法对10 m法电波暗室进行仿真设计,通过合理布置吸波材料,考虑一次反射和二次反射对静区的影响,计算了不同极化方式下静区的反射电平、归一化场地衰减和场均匀性。结果表明垂直极化和水平极化时,场地电压驻波比仿真与测试偏差小于2.3 d B;归一化场地衰减仿真与测试误差小于3 d B,场均匀性误差小于2 d B。仿真与测试结果吻合较好,各项指标均满足设计要求,验证了吸波材料布局的合理性及算法的可靠性。该仿真方法可应用于暗室静区性能评估,优化吸波材料布局,进而有效缩短设计周期。展开更多
文摘This article deals with picture excellence examination by different parameters utilizing uni-level Haar wavelet transmission in excess of remote channel. The quality is analyzed based on power. The goal is towards reducing absolute power assigned in favour of picture compression and communication, while power in favour of every bit is reserved at prearranged value. Two Power Algorithms were presented. The greatest iterative power control calculation and Minimum Power Adaptation Algorithm (MPAA) are proposed. Those algorithms methodology was utilized for improving the aggregate power dispensed for multimedia such as picture because of input compression and transmission focus towards a settled bit source mutilation. Simulations were performed utilizing Haar wavelet than Additive White Gaussian Ration (AWGN) channel. Different picture excellence parameters, for example, Peak Signal to Noise Ratio (PSNR), M-Normalized Cross-Correla- tion, Average Difference;Structural Content parameters, for example, Maximum Difference, Normalized Absolute Error, Elapsed Time, CPU time, demonstrate a improved presentation with MPAA, Maximum Power Adaptation Algorithms (MAPAA) instead of Conventional Power Adaptation Algorithm (CPAA).
文摘随着工业数字化转型的深入,数据安全和业务连续性成为企业关注的焦点。本文旨在探讨工业数据安全的现状、面临的威胁以及满足等保2.0(网络安全等级保护2.0)背景下康吉森Uni-BRS(智能灾备系统)有效应对策略及解决方案。本文通过分析Uni-BRS的应用案例,展示了如何通过先进的技术手段提高数据保护质量和业务连续性管理。研究发现,Uni-BRS通过全场景应用级灾备、微秒级CDP(Continuous Data Protection,数据连续性保护)、自动化验证告警等功能,有效应对了备份环境复杂多样、数据验证难、应急容灾挑战大和重建恢复难度高等挑战。本文建议企业应重视灾备系统的建设,以确保数据安全和业务连续性。
文摘为提升暗室吸波工程的设计能力,运用镜像射线跟踪法对10 m法电波暗室进行仿真设计,通过合理布置吸波材料,考虑一次反射和二次反射对静区的影响,计算了不同极化方式下静区的反射电平、归一化场地衰减和场均匀性。结果表明垂直极化和水平极化时,场地电压驻波比仿真与测试偏差小于2.3 d B;归一化场地衰减仿真与测试误差小于3 d B,场均匀性误差小于2 d B。仿真与测试结果吻合较好,各项指标均满足设计要求,验证了吸波材料布局的合理性及算法的可靠性。该仿真方法可应用于暗室静区性能评估,优化吸波材料布局,进而有效缩短设计周期。