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161.
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为了提高柴油机动态和稳态控制性能,提出了PID、F并联调速控制的方法,并利用Matlab/Simulink工具箱对PID、F交替调速控制和并联调速控制进行了仿真研究,表明Fuzzy-PID并联控制的性能优于常规PID控制和单纯的模糊调速控制以及PID、F交替调速控制的调速性能. 相似文献
163.
PID在柴油发电机组输出稳定性控制中的应用研究 总被引:1,自引:0,他引:1
针对目前移动式柴油发电机组机械式调速器响应速度慢、精度差以及负载变化较大时发电机组输出电压和频率波动较大的问题,研究了PID在柴油发电机组稳定性控制中的应用,进行了电子调速器电路的研究与设计。对75kW柴油发电机组进行了空载、半载及满载实验,实验结果验证了设计电路和控制方法的正确性。该电子调速器采用PID方法对发动机转速进行控制,达到了改善柴油发电机组输出稳定性的目的,并且具有响应速度快和准确度高的特点。 相似文献
164.
由于奥运临时用房项目建设的临时性、特殊性、紧迫性,导致了部分项目的消防设计存在难以满足现行规范的问题。笔者作为消防设计审核人员,以“为建筑内人员提供安全保障;为消防人员提供消防条件,保障其生命安全;尽量减少财产损失;保护结构安全;尽量减少对正常营运的干扰。”为安全目标,利用消防性能化设计,完善了消防设计中的火灾防控技术措施。 相似文献
165.
为解决完全依赖基于星间观测的导航星座长期自主导航的基准秩亏问题,提出基于脉冲星和星间链路的组合导航方法。给出了该方法的基本原理。为合理分散计算,采用简化和改进后的广义联邦滤波算法来对两种观测数据进行融合。仿真试验对该方法的合理性和可行性进行了验证。 相似文献
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In this paper, we present an optimization model for coordinating inventory and transportation decisions at an outbound distribution warehouse that serves a group of customers located in a given market area. For the practical problems which motivated this paper, the warehouse is operated by a third party logistics provider. However, the models developed here may be applicable in a more general context where outbound distribution is managed by another supply chain member, e.g., a manufacturer. We consider the case where the aggregate demand of the market area is constant and known per period (e.g., per day). Under an immediate delivery policy, an outbound shipment is released each time a demand is realized (e.g., on a daily basis). On the other hand, if these shipments are consolidated over time, then larger (hence more economical) outbound freight quantities can be dispatched. In this case, the physical inventory requirements at the third party warehouse (TPW) are determined by the consolidated freight quantities. Thus, stock replenishment and outbound shipment release policies should be coordinated. By optimizing inventory and freight consolidation decisions simultaneously, we compute the parameters of an integrated inventory/outbound transportation policy. These parameters determine: (i) how often to dispatch a truck so that transportation scale economies are realized and timely delivery requirements are met, and (ii) how often, and in what quantities, the stock should be replenished at the TPW. We prove that the optimal shipment release timing policy is nonstationary, and we present algorithms for computing the policy parameters for both the uncapacitated and finite cargo capacity problems. The model presented in this study is considerably different from the existing inventory/transportation models in the literature. The classical inventory literature assumes that demands should be satisfied as they arrive so that outbound shipment costs are sunk costs, or else these costs are covered by the customer. Hence, the classical literature does not model outbound transportation costs. However, if a freight consolidation policy is in place then the outbound transportation costs can no longer be ignored in optimization. Relying on this observation, this paper models outbound transportation costs, freight consolidation decisions, and cargo capacity constraints explicitly. © 2002 Wiley Periodicals, Inc. Naval Research Logistics 49: 531–556, 2002; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/nav.10030 相似文献
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王伊丽 《中国人民武装警察部队学院学报》2010,26(9):72-74
大学英语分级教学模式下对学生的学习策略培养非常重要。教师在整个教学过程当中,要研究和掌握学生的语言学习习得过程,研究其学习特点,认知风格,心理特征,加强对学生学习策略的培养和指导,帮助学生积极参与、探索、建构和使用学习策略,为学生掌握学习策略提供条件与平台,使学生自觉运用学习策略自我管理、自我调控、自我评估学习过程和学习效果,不断提高自主学习的能力。 相似文献
170.
Magnetic resonance imaging and other multifunctional diagnostic facilities, which are considered as scarce resources of hospitals, typically provide services to patients with different medical needs. This article examines the admission policies during the appointment management of such facilities. We consider two categories of patients: regular patients who are scheduled in advance through an appointment system and emergency patients with randomly generated demands during the workday that must be served as soon as possible. According to the actual medical needs of patients, regular patients are segmented into multiple classes with different cancelation rates, no‐show probabilities, unit value contributions, and average service times. Management makes admission decisions on whether or not to accept a service request from a regular patient during the booking horizon to improve the overall value that could be generated during the workday. The decisions should be made by considering the cancelation and no‐show behavior of booked patients as well as the emergency patients that would have to be served because any overtime service would lead to higher costs. We studied the optimal admission decision using a continuous‐time discrete‐state dynamic programming model. Identifying an optimal policy for this discrete model is analytically intractable and numerically inefficient because the state is multidimensional and infinite. We propose to study a deterministic counterpart of the problem (i.e., the fluid control problem) and to develop a time‐based fluid policy that is shown to be asymptotically optimal for large‐scale problems. Furthermore, we propose to adopt a mixed fluid policy that is developed based on the information obtained from the fluid control problem. Numerical experiments demonstrate that this improved policy works effectively for small‐scale problems. © 2016 Wiley Periodicals, Inc. Naval Research Logistics 63: 287–304, 2016 相似文献