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961.
IPSec是由IETF组织定义的标准框架,包括有数据格式协议、密钥交换和加密算法等,为IP网络通信提供透明的安全服务。IPSec不仅能为企业局域网与拨号用户、域、网站、远程站点等之间的通信提供强有力且灵活的保护,而且还能用来筛选特定数据流。通过应用IPSec安全策略来筛选特定的IP或端口,并给出配置过程,提供了安全、高效和透明的网络保护,提高了安全保障性能,从而限制常见病毒、木马、黑客的攻击。 相似文献
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963.
利用海杂波的循环平稳特性,提出了一种基于奇异值分解的纹理分量抑制算法,并对其性能进行了分析。首先结合海杂波的循环平稳模型,推导了循环均值和循环自相关函数的封闭表达式。利用海杂波强度数据构造Hankle矩阵并进行奇异值分解,由于奇异值分解后得到的奇异值主要成分是与纹理分量谐波频率对应的特征量,而循环均值在纹理分量谐波频点处出现峰值,因此可以通过抑制奇异值主要成分实现循环均值的峰值抑制。奇异值抑制后,通过矩阵重构和数据恢复,最终实现纹理分量的抑制。最后,分析了Hankle矩阵维数对抑制性能的影响,并分别采用仿真数据和实测数据验证了算法的有效性。 相似文献
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967.
In this paper, a reliable multicast transport protocol TCP-Peachtree is proposed for satellite Internet protocol (IP) networks. In addition to the acknowledgment implosion and scalability problems in terrestrial wirelined networks, satellite multicasting has additional problems, i.e., different multicast topology, different type of congestion control problems, and low bandwidth feedback link. In TCP-Peachtree, the modified B+ tree logical hierarchical structure is used to form dynamic multicast groups. Local error recovery and acknowledgment (ACK) aggregations are performed within each subgroup and also via logical subgroups. In order to avoid the overall performance degradation caused by some worst receivers, a local relay scheme is designed. Two new algorithms, jump start and quick recovery, which are based on the usage of a type of low-priority segments called NIL segments, are proposed for congestion control. NIL segments are used to probe the availability of network resources and also for error recovery. The delayed selective acknowledgment (SACK) scheme is adopted to address the bandwidth asymmetry problems and a hold state is developed to address persistent fades. The simulation results show that the congestion control algorithms of TCP-Peachtree outperform the TCP-NewReno when combined with our hierarchical groups and improve the throughput performance during rain fades. It is also shown that TCP-Peachtree achieves fairness and is very highly scalability. 相似文献
968.
Jian Yang Carlberg U. Kildal P.-S. Kehn M.N.M. 《Microwave Theory and Techniques》2004,52(6):1615-1621
A fast mode analysis for waveguides of arbitrary cross section with multiple regions is presented in this paper. The analysis is based on a spectrum of two-dimensional (2-D) solutions with application of asymptotic waveform evaluation, which requires only several 2-D solutions in searching for the propagation modes and calculating the field distribution of the modes in waveguides. The boundaries of waveguides can be modeled by perfect electric conductors, perfect magnetic conductors, dielectric materials, and asymptotic strip boundary conditions. By this modeling, one can also analyze the waveguides with the soft and hard surfaces. The method is excitation dependent, which provides a tool to analyze the response of different modes to different excitations. No existence of spurious modes is experienced by using this method. The verification and comparison of the numerical results with analytical, published data, and measurements are also presented in this paper. 相似文献
969.
阐述目前国内常见的建设城域网的技术并深入分析比较几种技术的优势和劣势 ,并就CWDM技术的发展和应用方案实例作了简要描述 相似文献
970.
Jian Tang Congli He Jianshi Tang Kun Yue Qingtian Zhang Yizhou Liu Qinqin Wang Shuopei Wang Na Li Cheng Shen Yanchong Zhao Jieying Liu Jiahao Yuan Zheng Wei Jiawei Li Kenji Watanabe Takashi Taniguchi Dashan Shang Shouguo Wang Wei Yang Rong Yang Dongxia Shi Guangyu Zhang 《Advanced functional materials》2021,31(27):2011083
High-performance artificial synaptic devices are indispensable for developing neuromorphic computing systems with high energy efficiency. However, the reliability and variability issues of existing devices such as nonlinear and asymmetric weight update are the major hurdles in their practical applications for energy-efficient neuromorphic computing. Here, a two-terminal floating-gate memory (2TFGM) based artificial synapse built from all-2D van der Waals materials is reported. The 2TFGM synaptic device exhibits excellent linear and symmetric weight update characteristics with high reliability and tunability. In particular, the high linearity and symmetric synaptic weight realized by simple programming with identical pulses can eliminate the additional latency and power consumption caused by the peripheral circuit design and achieve an ultralow energy consumption for the synapses in the neural network implementation. A large number of states up to ≈3000, high switching speed of 40 ns and low energy consumption of 18 fJ for a single pulse have been demonstrated experimentally. A high classification accuracy up to 97.7% (close to the software baseline of 98%) has been achieved in the Modified National Institute of Standards and Technology (MNIST) simulations based on the experimental data. These results demonstrate the potential of all-2D 2TFGM for high-speed and low-power neuromorphic computing. 相似文献