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101.
With the development of electric helicopters’ motor technology and the widespread use of electric drive rotors, more aircraft use electric rotors to provide thrust and directional control. For a helicopter tail rotor, the wake of the main rotor influences the tail rotor’s inflow and wake. In the procedure of controlling, crosswind will also cause changes to the tail disk load. This paper describes requirements and design principles of an electric motor drive and variable pitch tail rotor system. A particular spoke-type architecture of the motor is designed, and the performance of blades is analyzed by the CFD method. The demand for simplicity of moving parts and strict constraints on the weight of a helicopter makes the design of electrical and mechanical components challenging. Different solutions have been investigated to propose an effective alternative to the mechanical actuation system. A test platform is constructed which can collect the dynamic response of the thrust control. The enhancement of the response speed due to an individual motor speed control and variable-pitch system is validated. 相似文献
102.
In this paper, a multi-delay milling system considering helix angle and run-out effects is firstly established. An exponential cutting force model is used to model the interaction between a work-piece and a cutting tool, and a new approach is presented for accurately calibrating exponential cutting force coefficients and cutter run-out parameters. Furthermore, based on an implicit multi-step Adams formula and an improved precise time-integration algorithm, a novel stability prediction method is proposed to predict the stability of the system. The involved time delay term and periodic coefficient term are integrated as a comprehensive state term in the integral response which is approximated by the Adams formula. Then, a Floquet transition matrix with an arbitrary-order form is constructed by using a series of matrix multiplication, and the stability of the system is determined by the Floquet theory. Compared to classical semi-discretization methods and full-discretization methods, the developed method shows a good performance in convergence, efficiency, accuracy, and multi-order complexity. A series of cutting tests is further carried out to validate the practicability and effectiveness of the proposed method. The results show that the calibration process needs a time of less than 5 min, and the stability prediction method is effective. 相似文献
惯性质量是力传感器模型的重要校准参数,也是影响动态力测量精度的关键因素之一。为了消除参数误差对惯性质量校准模型引起的病态,提出一种改进Monte Carlo校准(MMCC)方法。首先,建立力传感器惯性质量、配重质量与测量响应之间的模型;其次,利用伪随机数生成技术,分别对该模型中的配重质量、加速度和电压进行样本空间的全域模拟;然后,根据区间判断准则筛选出满足预设精度的有效样本;最后,结合有效样本的概率,估计出力传感器的惯性质量,并实现动态校准。为了验证本文方法的准确性,利用正弦激振台对Kistler 9331B型力传感器进行动态校准。实验结果表明,惯性质量的估计值为83.91 g,估计误差为0.67%,标准差为0.74 g;动态力的校准误差范围为[-7.88%,11.46%]。校准误差明显低于传统的二次及多次配重法。 相似文献
104.