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21.
采用功率倒置准则的自适应天线阵特别适合于弱信号、强干扰的场合,因而在卫星导航系统中得到了广泛的应用。针对基于最小均方误差(LMS)算法实现的卫星导航功率倒置阵在干扰数目或干扰功率突然减少时,算法收敛慢、影响信号接收性能的问题,分析了这一现象的产生机理,并提出了相应的改进算法。改进算法通过功率监测来检测干扰数目或干扰功率的突变,然后对LMS算法进行复位处理重置权值来达到迅速收敛的目的。仿真结果表明,与原算法相比,改进算法可显著提高功率倒置阵的收敛速度。 相似文献
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军用车辆采用锂电池组作为动力源可有效解决排放问题,具有高机动性、隐蔽性、稳定性的特性,并能为未来的军用电磁火力平台配置创造条件。其中的电源管理系统关系到军用车辆的电源实施监测控制运行,系统工作效果决定了军用车辆使用的可靠性。通过对军用车辆动力锂电池组电源系统的优化设计,可使锂电池组电源管理控制系统的设计效率得到全面提升。在进行电源管理系统的初步设计过程中,通常需要采用多种不同的方式对其动力体系进行初步的评估。主要针对军用车辆动力锂电池组电源管理系统进行设计分析,并提出了相应的优化措施。 相似文献
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Eyal Pecht 《Defence and Peace Economics》2017,28(3):367-399
This study develops a dynamic model that integrates military intelligence into the defense capability of the country and the optimal allocation of its government budget. We assert that the effectiveness of the country’s military intelligence is contingent on the quality of its human capital, which, in turn, implies a long-term positive relationship between the government’s various civilian expenditures and its capacity to achieve a cost-effective intelligence and, hence, military capability. This relationship is developed within a multiple-period arms race model between two rivals. Using this model and stylized data for the Israeli–Syrian arms race, we show that an appropriate budget shift from defense to civilian expenditures during the initial periods of the planning horizon will gradually (over a decade, say) increase the quality of human capital in the country and, thus, the effectiveness of its intelligence, which, in turn, will increase the country’s future security and welfare. 相似文献
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以水下单元的短路/开路故障模式为基础,提出了一种分析缆系海底观测网络恒流远供系统可靠性的方法。根据系统供电和结构特性,将系统分成不同的供电链路和链路段。详细研究了处于不同位置的各种水下单元发生故障时,对链路和观测设备的供电状态的影响。归纳了导致系统和各链路无法正常导通、观测设备无法得到供电的状态情况,分析了不同故障状态发生的概率,进而得出了求解系统、供电链路与供电设备的供电可靠度的方法。通过算例分析,进一步梳理了3种供电可靠性的共性规律,说明在设计和建设恒流远供系统时,应综合须考量这3种供电可靠性。 相似文献
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A learning tabu search for a truck allocation problem with linear and nonlinear cost components
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The two‐level problem studied in this article consists of optimizing the refueling costs of a fleet of locomotives over a railway network. The goal consists of determining: (1) the number of refueling trucks contracted for each yard (truck assignment problem denoted TAP) and (2) the refueling plan of each locomotive (fuel distribution problem denoted FDP). As the FDP can be solved efficiently with existing methods, the focus is put on the TAP only. In a first version of the problem (denoted (P1)), various linear costs (e.g., fuel, fixed cost associated with each refueling, weekly operating costs of trucks) have to be minimized while satisfying a set of constraints (e.g., limited capacities of the locomotives and the trucks). In contrast with the existing literature on this problem, two types of nonlinear cost components will also be considered, based on the following ideas: (1) if several trucks from the same fuel supplier are contracted for the same yard, the supplier is likely to propose discounted prices for that yard (Problem (P2)); (2) if a train stops too often on its route, a penalty is incurred, which represents the dissatisfaction of the clients (Problem (P3)). Even if exact methods based on a mixed integer linear program formulation are available for (P1), they are not appropriate anymore to tackle (P2) and (P3). Various methods are proposed for the TAP: a descent local search, a tabu search, and a learning tabu search (LTS). The latter is a new type of local search algorithm. It involves a learning process relying on a trail system, and it can be applied to any combinatorial optimization problem. Results are reported and discussed for a large set of instances (for (P1), (P2), and (P3)), and show the good performance of LTS. © 2014 Wiley Periodicals, Inc. 62:32–45, 2015 相似文献
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