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基于动态负载模拟方法的双电机电动履带车辆试验台的设计与建模。

Design and Modeling of a Test Bench for Dual-Motor Electric Drive Tracked Vehicles Based on a Dynamic Load Emulation Method.

机构信息

State Key Laboratory of Fluid Power and Mechatronic Systems, Zhejiang University, Hangzhou 310027, China.

Beijing Institute of Astronautical Systems Engineering, Beijing 100076, China.

出版信息

Sensors (Basel). 2018 Jun 21;18(7):1993. doi: 10.3390/s18071993.

Abstract

Dual-motor Electric Drive Tracked Vehicles (DDTVs) have attracted increasing attention due to their high transmission efficiency and economical fuel consumption. A test bench for the development and validation of new DDTV technologies is necessary and urgent. How to load the vehicle on a DDTV test bench exactly the same as on a real road is a crucial issue when designing the bench. This paper proposes a novel dynamic load emulation method to address this problem. The method adopts dual dynamometers to simulate both the road load and the inertia load that are imposed on the dual independent drive systems. The vehicle’s total inertia equivalent to the drive wheels is calculated with separate consideration of vehicle body, tracks and road wheels to obtain a more accurate inertia load. A speed tracking control strategy with feedforward compensation is implemented to control the dual dynamometers, so as to make the real-time dynamic load emulation possible. Additionally, a MATLAB/Simulink model of the test bench is built based on a dynamics analysis of the platform. Experiments are finally carried out on this test bench under different test conditions. The outcomes show that the proposed load emulation method is effective, and has good robustness and adaptability to complex driving conditions. Besides, the accuracy of the established test bench model is also demonstrated by comparing the results obtained from the simulation model and experiments.

摘要

双电机电动履带车辆(DDTV)因其传动效率高、燃油经济性好而受到越来越多的关注。开发和验证新型 DDTV 技术的试验台是必要且紧迫的。在设计试验台时,如何将车辆准确地装载到与实际道路完全相同的 DDTV 试验台上是一个关键问题。本文提出了一种新的动态负载模拟方法来解决这个问题。该方法采用两个测功机来模拟施加在双独立驱动系统上的道路负载和惯性负载。通过分别考虑车身、履带和路轮来计算车辆驱动轮的总惯量等效值,以获得更准确的惯性负载。采用具有前馈补偿的速度跟踪控制策略来控制两个测功机,从而实现实时动态负载模拟。此外,还基于平台动力学分析,在 MATLAB/Simulink 中建立了试验台的模型。最后在不同的试验条件下在该试验台上进行了实验。结果表明,所提出的负载模拟方法有效,对复杂的驾驶条件具有良好的鲁棒性和适应性。此外,通过比较仿真模型和实验结果,验证了所建立的试验台模型的准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c18/6068514/f2316b3fa8a9/sensors-18-01993-g001.jpg

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