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1.
随着实时仿真复杂性的提高,单个的处理器不足以完成所有的必需仿真计算任务。希望能在不同的处理器上完成实时仿真的不同任务,对称多处理器的机制需要软件支持,以使每个处理器通过共享内存进行信息交换。利用多线程控制技术,可以在非全进程开销或不使用共享内存的条件下,使用多处理器。其理由在于线程本身就蕴涵有共享地址的概念。一个多线程的实时程序,利用其中的主线程控制其它的辅助线程,每个处理器用于完成一个辅助的实时计算线程,主线程负责实时时钟的监控,当时钟到达时,启动相应的辅助线程,辅助线程利用图形用户界面(GUI)来监控仿真的进行。  相似文献   

2.
地形跟踪/地形回避、威胁回避(TF/TA2)实时航迹规划计算机是综合TF/TA2低空突防系统的控制核心.系统按照由它产生的最优航迹产生制导指令,并控制飞行器按此最优航迹完成突防任务.本文提出了一种实时航迹规划计算机的设计方案.该方案采用由共享存储器耦合的三个智能模块(即智能总线接口、航迹规划处理机和数据处理机)并行运行的结构,以提高系统的运行速度,满足低空突防对航迹规划计算机的实时性要求.其中,航迹规划处理机和数据处理机的双机互备份降级运行方式提高了系统的可靠性.此外,以闪存为存储介质的内存数据库使系统检索和读取机载数据的速度大大提高,且闪存的非易失性保证了机载数据的可靠性.  相似文献   

3.
This paper presents a computationally efficient real-time trajectory planning framework for typical unmanned combat aerial vehicle (UCAV) performing autonomous air-to-surface (A/S) attack. It combines the benefits of inverse dynamics optimization method and receding horizon optimal control technique. Firstly, the ground attack trajectory planning problem is mathematically formulated as a receding horizon optimal control problem (RHC-OCP). In particular, an approximate elliptic launch acceptable region (LAR) model is proposed to model the critical weapon delivery constraints. Secondly, a planning algorithm based on inverse dynamics optimization, which has high computational efficiency and good convergence properties, is developed to solve the RHCOCP in real-time. Thirdly, in order to improve robustness and adaptivity in a dynamic and uncer- tain environment, a two-degree-of-freedom (2-DOF) receding horizon control architecture is introduced and a regular real-time update strategy is proposed as well, and the real-time feedback can be achieved and the not-converged situations can be handled. Finally, numerical simulations demon- strate the efficiency of this framework, and the results also show that the presented technique is well suited for real-time implementation in dynamic and uncertain environment.  相似文献   

4.
涡轴发动机简化实时模型研究   总被引:1,自引:0,他引:1       下载免费PDF全文
涡轴发动机数控系统传感器故障诊断需机载的发动机数学模型,由于缺乏部件特性数据,根据某型发动机地面试车稳态数据和动态数据,建立涡轴发动机慢车以上状态简化数学模型。该模型具有较好的实时性,稳态模型采用插值算法,动态模型针对不同参数分别采用动态系数法和转子动力学方法。数值仿真结果表明:该简化模型具有较高的动态和稳态精度,可以满足传感器故障诊断的需求。  相似文献   

5.
根据目标系统的体系结构和功能分布特性以及实时性要求,文章提出了一种混合式实时容错调度算法,该算法对系统中服务器机组和工作站机组的任务分别实施对称式调度和以处理机负载平衡为目标的调度。当系统执行过程中检测到处理机故障,通过双机切换和冗余任务动态唤醒的办法进行系统重构,实现了目标系统硬实时和软实时共存的容错需求。  相似文献   

6.
针对多操纵面飞机舵面损伤的快速故障诊断问题,提出一种直接估计舵面偏转量的自适应补偿观测器方法。首先,设计了增广观测器进行系统输入估计,并提出了自适应补偿方法解决其动态跟踪性能差的问题;其次,设计了一种新的自适应阈值以快速检测故障并降低虚警率;最后,利用舵面故障特点,采用重置初值的限定记忆最小二乘方法实现了对突变参数的实时估计,用以进行故障隔离。仿真结果表明:在不同的舵面损伤故障情况下,所提出的观测器方法能在20 ms内发出故障预警,并在0.22 s内确定故障位置,所采用的辨识方法可以在故障报警后的0.2 s内准确估计出损伤程度。  相似文献   

7.
The optimal scheduling of the tasks of a multitarget tracking problem onto multiprocessors to minimize the schedule length is considered. The main impediments of the recent A* algorithm for optimal scheduling of the tasks of this problem, the space and time requirements, are reduced using three new techniques, viz. processor isomorphism, duplicated node deletion, and lower bound on completion time. The effectiveness of these techniques is analyzed and demonstrated with the above real-time critical problem  相似文献   

8.
针对未来战场形势对攻击型飞行器提出的大包线飞行、大不确定、主动容错控制问题,提出了一种基于在线辨识和专家系统的智能姿态控制方法。该方法通过在线估计飞行器的时域、频域关键参数,驱动专家系统实时计算并调整控制器参数;结合时域、频域辨识结果诊断、定位故障,实现故障隔离、控制策略调整。该方法综合了飞行器结构、气动试验数据和专家知识,通过在线辨识和估计丰富了专家系统推理计算所需信息,促进了专家系统的在线应用,是一种近期可实现的智能控制方法。仿真结果表明,采用该方法,姿态发散概率由无容错控制时的45%降低到容错控制时的0%,姿态控制任务完成率100%。  相似文献   

9.
设计了一款基于多DSP芯片的并行SAR雷达转角变换模块,用于协调合成孔径雷达(SAR:SyntheticAperture Radar)雷达距离处理模块和方位处理模块间的数据转换。设计采用了多片AD公司的超级哈佛结构的DSP芯片,这样能进行高速大容量的浮点运算。为满足SAR雷达的大数据量存储,选用了大容量的DRAM,并配有CPLD模块用于接口控制。设计解决了处理时间与容量的矛盾,实现了SAR雷达转角模块数据的实时高速处理。  相似文献   

10.
Estimating the Doppler centroid of SAR data   总被引:5,自引:0,他引:5  
After reviewing frequency-domain techniques for estimating the Doppler centroid of synthetic-aperture radar (SAR) data, the author describes a time-domain method and highlights its advantages. In particular, a nonlinear time-domain algorithm called the sign-Doppler estimator (SDE) is shown to have attractive properties. An evaluation based on an existing SEASAT processor is reported. The time-domain algorithms are shown to be extremely efficient with respect to requirements on calculations and memory, and hence they are well suited to real-time systems where the Doppler estimation is based on raw SAR data. For offline processors where the Doppler estimation is performed on processed data, which removes the problem of partial coverage of bright targets, the ΔE estimator and the CDE (correlation Doppler estimator) algorithm give similar performance. However, for nonhomogeneous scenes it is found that the nonlinear SDE algorithm, which estimates the Doppler-shift on the basis of data signs alone, gives superior performance  相似文献   

11.
航空发动机过渡态试验进气压力线性自抗扰控制方法   总被引:1,自引:1,他引:0  
航空发动机高空模拟试车台过渡态试验中进气控制系统受扰严重,常规方法难以有效提升进气压力控制品质,提出了一种基于线性自抗扰的进气压力控制方法。采用机理建模和系统辨识手段搭建高置信度进气仿真平台,设计线性自抗扰控制器,实现对发动机扰动影响的实时预估和补偿,形成具有主动抗扰机制的进气压力控制方法。考虑实际使用中存在控制器手/自动及控制器间的切换问题,设计实用型无扰切换方法。仿真环境下,将该方法与比例积分微分(PID)进行对比,结果显示进气压力最大偏离值由7.69kPa缩小至0.9kPa,且能够快速收敛趋于稳定,表明了该方法无需发动机信息即可实现进气压力的有效控制,通用性高,抗扰性优,能够大幅提升发动机过渡态试验中进气系统的调节品质。   相似文献   

12.
Space and Earth observation programs demand stringent guarantees ensuring smooth and reliable operations of space vehicles and satellites. Due to unforeseen circumstances and naturally occurring faults, it is desired that a fault-diagnosis system be capable of detecting, isolating, identifying, or classifying faults in the system. Unfortunately, none of the existing fault-diagnosis methodologies alone can meet all the requirements of an ideal fault- diagnosis system due to the variety of fault types, their severity, and handling mechanisms. However, it is possible to overcome these shortcomings through the integration of different existing fault-diagnosis methodologies. In this paper, a novel learning-based, diagnostic-tree approach is proposed which complements and strengthens existing efficient fault detection mechanisms with an additional ability to classify different types of faults to effectively determine potential fault causes in a subsystem of a satellite. This extra capability serves as a semiautomatic diagnostic decision support aid to expert human operators at ground stations and enables them to determine fault causes and to take quick and efficient recovery/reconfiguration actions. The developed diagnosis/analysis procedure exploits a qualitative technique denoted as diagnostic tree (DX-tree) analysis as a diagnostic tool for fault cause analysis in the attitude control subsystem (ACS) of a satellite. DX-trees constructed by our proposed machine-learning-based automatic tree synthesis algorithm are demonstrated to be able to determine both known and unforeseen combinations of events leading to different fault scenarios generated through synthetic attitude control subsystem data of a satellite. Though the immediate application of our proposed approach would be at ground stations, the proposed technique has potential for being integrated with causal model-based diagnosis and recovery techniques for future autonomous space vehicle missions.  相似文献   

13.
董朝阳  路遥  江未来  王青 《航空学报》2015,36(6):2047-2054
针对一类存在执行机构故障的分布式结构变体飞行器的控制分配问题,结合整数规划理论,提出一种基于布谷鸟搜索算法的容错控制方法。首先,设计虚拟控制指令,使得系统状态能够很好地跟踪参考模型;然后,将执行器概率性故障与饱和约束转换为整数规划问题中决策变量的约束,从而将执行器控制分配问题转化为一类整数规划问题;最后,采用改进的布谷鸟搜索算法进行求解,得到实际的执行器控制分配指令。仿真结果表明,在执行器存在概率性故障的情况下,该容错控制方法较无容错策略的情况能够有效提升系统的跟踪性能;与遗传算法相比,该算法得到的执行器控制分配结果更加精确。  相似文献   

14.
随着航空电子系统承载的应用日趋复杂,飞机对机载计算机的计算力和功耗比要求不断提升,这也推动了嵌入式多核处理器的加速应用和普及。多核处理器在航空电子设备的深入应用,随之而来的是运行其上的软件复杂度急剧上升,面向应用的航电系统设计面临挑战。多核处理器平台由于需要面对并行、指令乱序、资源共享冲突等问题,而目前国内大多数机载嵌入式软件和驱动仍然是基于单核处理器设计和实现的,影响最大的是在机载嵌入式实时操作系统环境下的驱动软件,因此需要充分考虑多核带来的各方面影响,尤其是需要兼顾共享内存等资源的使用冲突和实时高效要求。本文结合机载航电多核处理平台的特点,提出了一种基于机载多核弱序存储模型的共享内存驱动软件设计方法,并基于该方法设计了FC总线驱动和MBI总线驱动,项目应用结果表明,设计的驱动程序在多核处理器平台上数据传输正确,验证了方法的正确性和有效性。  相似文献   

15.
针对里程仪输出的速度(或位置增量),其参数标定误差残差是影响定位定向系统性能的关键因素,传统里程仪参数标定方法需在行车过程中设置精确标志点,且有行驶路线受限的缺点,因此提出一种基于速度量测的定位定向系统误差实时估计和补偿方法.该方法将里程仪刻度系数误差、安装误差残差纳入状态变量进行实时估计并补偿,将惯性导航系统输出的速度与里程仪输出的速度进行对比,构建量测方程.设计跑车试验对该方法进行验证,结果表明该车载里程仪参数的实时标定方法,仅需要在里程仪安装在车辆上后,导航系统做一次正常罗经对准并转惯性/里程仪组合导航模式,在车辆正常行驶过程中,即可自动标定出里程仪参数误差,具有自主、灵活简便、精度高的特点,同时提高了惯性/里程仪组合导航系统定位精度.  相似文献   

16.
蔡开元  文传源 《航空学报》1989,10(7):354-361
 瞬时故障广泛存在于各种系统并导致功能失效。按照其导致系统故障的机理不同,瞬时故障可被划分为若干类。第一类瞬时故障具有这样的性质,其持续时间一旦超过某一界限即引起系统故障。第二类瞬时故障导致系统故障的概率与其出现时刻有关而与其持续时间无关。 本文讨论第三类瞬时故障并计算其在(0,t)时间内不导致系统故障的概率。第三类瞬时故障具有这样的性质,其导致系统故障的概率与其持续对间的关系服从某一分布。本文所建立的用于描述第三类瞬时故障的模型考虑了瞬时故障不出现状态FNP,以及瞬时故障不作用状态FN和瞬时故障作用状态FA向FNP的转移,但并没有假定状态之间的转移具有Markov性质。因而可被广泛接受。  相似文献   

17.
We consider the problem of designing fault tolerant control for transient failures in the flight control system caused by harsh electromagnetic environments. We examine principles of fault tolerant design and discuss integrated local supervisory control of these systems. As an example, we present a sample design of a control mixer to achieve fault tolerance in the event of failures in the actuators  相似文献   

18.
The goal of task allocation in a set of interconnected processors (computers) is to maximize the efficient use of resources and thus reduce the job turnaround time. Proposed is a simple yet effective method to allocate the tasks in multicomputer systems for minimizing the interprocessor communication cost subject to resource limitations defined by the system and designer. The limitations can be viewed as results from the load balancing since the execution time of each task, the number of available processors, processor speed, and memory capacity are known to the system or designer. As the number of processors increases, the probability of a failure existing somewhere in the systems at any time also increases. Very few established task allocation models have considered the reliability property. In multicomputer systems, we define system reliability as the probability that the system can run the tasks successfully. After the (nonredundant) task scheduling strategy is defined, tasks are then reallocated to processors statically and redundantly. This is a form of time redundancy, in which if some processors fail during the execution, all tasks can be completed on the remaining processors (but at a longer time). Due to static preallocation of tasks this method is simpler and thus more practical than well-known dynamic reconfiguration and rollback recovery techniques in multicomputer systems. We demonstrate the effectiveness of the task allocation and reallocation for hardware fault tolerance by illustrations of applying the methods to different examples and practical communications network multiprocessor system  相似文献   

19.
闭环上升制导是吸气式空天飞行器达到快速优化、实时规划以及自主制导的必然要求。采用GHAME吸气式空天飞行器作为研究对象,提出了闭环上升制导最优控制方案,重点论证了该方案不存在关于节流阀值的奇异问题,并阐述了最优推力控制的Bang-Bang控制。引入有限差分法求解两点边值问题,并通过终端时刻调节算法求解终端时刻自由问题。仿真结果表明,所提出的闭环制导算法是有效、可行的,具有显著的优越性。  相似文献   

20.
This paper proposes a neural network-based fault diagnosis scheme to address the problem of fault isolation and estimation for the Single-Gimbal Control Moment Gyroscopes(SGCMGs) of spacecraft in a periodic orbit. To this end, a disturbance observer based on neural network is developed for active anti-disturbance, so as to improve the accuracy of fault diagnosis.The periodic disturbance on orbit can be decoupled with fault by resorting to the fitting and memory ability of neural network. Subsequ...  相似文献   

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