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This paper presented a scheme of relayed cellular mobile telecommunication network, which only employs fixed digital relays and not more than two-hop relay routes. Power saving potential of the network is deeply studied under the assumption of not occupying additional frequency bands (i. e. relays share the same frequency bands as used by the base stations). Theoretical analysis and simulation results have both shown that, with the same radio coverage requirement, the necessary effective transmission powers in such a relayed network have greatly decreased compared to conventional cellular network. 相似文献
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为克服基于大量统计资料的汽车追尾事故评价方法存在的多种因素随机性,提出了一种追尾事故的模糊综合评价方法。以人、车、路为影响追尾事故的主要因素,建立了追尾事故的多级模糊评价模型。在案例分析中以天气指标的变化为算例,证实评价结果会随条件的变化而发生相应的改变,从而说明多级模糊评价模型的可靠性。 相似文献
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基于信息融合技术模拟驾驶人信息感知、分析决策和车辆控制的全过程,建立跟随驾驶协同仿真模型.模型以动态交通信息为输入,设计单个神经元仿真驾驶人对感知信息的筛选,采用模糊径向基高斯神经网络提取驾驶行为特征向量,应用模糊积分法模拟驾驶人对信息的分析和决策过程,输出为车辆控制状态.离线检验结果表明,该模型能较好地描述跟随车状态变化,具有较高的精度. 相似文献
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This paper presented ascheme of two-hop cellular network with fixed relay nodes (FRN). Based on this scheme, co-channel interference and signal interference ratio(SIR) received by base station(BS) and FRN were analyzed. Both the theoretical analysis and simulation results show that the SIR can be improved significantly when relays are employed in the network. The higher spectral efficiency can be obtained due to the improved two-hop link quality through the use of adaptive modulation and coding (AMC). The antenna height of FRN and the cell radius of BS and that of FRN influence SIR received by BS and FRN and the system spectral efficiency greatly. The proper antenna height of FRN and cell radius of BS and that of FRN were also given to get the highest spectral efficiency. 相似文献
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以驾驶人认知响应不及时引发的追尾事故为研究对象,研究驾驶人车辆控制动作响应延迟对追尾事故的影响.定义了汽车驾驶人不响应概率函数,利用反应时间序列进行了求解,绘制了响应时间曲线.采用ANFIS理论,以前后车速差、后车车速、车间距及驾驶人不响应概率为输入,以汽车追尾概率为输出,建立追尾风险评估模型来预测汽车追尾可能性大小.实例分析表明,利用该模型预测汽车追尾风险大小是可行的. 相似文献
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Interference and Spectral Efficiency Analysis in Two-hop Cellular Network with Fixed Relays in FDD Mode 总被引:1,自引:1,他引:0
IntroductionRelaying is well known for its potential of ex-tending the high data rate coverage of a single basestation and reducing infrastructure deploymentcosts. Moreover, it is efficient in solving the cov-erage problem behind the obstacles and eliminatingblack spots, which even can not be solved by intro-ducing smart antenna technology[1,2]. Some dumbrelays (analog repeaters) have been adopted[1]in2 G and 3 G systems. But in such scenarios, thesignals received are forwarded without any si… 相似文献
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