提高乘坐舒适性的二自由度卡车悬架座椅的研制

Pornporm Boonporm, Kriattisak Houdjaroen, Chackapong Panchomphu
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引用次数: 1

摘要

除了驾驶员和乘客的乘坐舒适性外,必须考虑振荡运动对健康的危害,特别是像卡车这样每天长时间工作9小时的驾驶员。意想不到的路面粗糙度和一些干扰通过底盘和座椅传递给人的不必要的振动造成了伤害。一般情况下,被动式座椅在其共振之间会放大低频振动。出于这个原因,我们提出并开发了主动座椅悬架来减少垂直加速度。首先通过振动调查和现场测量确定了该问题。我们还发现,座椅俯仰角和俯仰角对驾驶员的乘坐舒适性也有影响。在假设小位移和俯仰模型的情况下,建立了垂直方向和俯仰角两自由度驾驶员座椅模型。初步估算了工作点附近的等效弹簧刚度和阻尼系数。由于系统在工作范围之间存在非线性,因此将FLC与最优指标一起开发,并通过Matlab/Sumulink进行仿真。结果表明,所设计的控制器能够有效地衰减驾驶员座位处的垂直加速度。重量均方根垂直加速度必须遵循ISO 2631-1的舒适范围以及俯仰率幅度明显降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of 2 DOF Truck's Suspension Seat for Improving Ride Comfort
Besides the driver and passenger's ride comfort, health harmfulness from oscillation motion must be taken into consideration, especially the drivers who work daily 9-hours long terms like in trucks. The unwanted vibration transmitted from unpredicted road roughness and some disturbance via the chassis and seat to human caused the injury. Generally the passive seats amplified vibration at low frequency between its resonance. For this reasons, we proposed and developed the active seat suspension to reduce the vertical acceleration. The problem was firstly identified via the vibration investigation and field measurement. We have also found that the seat pitch angle and pitch rate disturb the driver is aspect of ride comfort. The two degree of freedom driver seat model in vertical direction and pitch angle were demonstrated with assuming small displacement and pitch model. The equivalent spring stiffness and damping coefficient was preliminary estimated around the operation point. Due to the system nonlinearity between the operating ranges, the FLC was developed together with the optimal index, simulated via Matlab/Sumulink. The results figured out that the proposed controllers are effective in attenuating the vertical acceleration at driver seat. The weight root mean square vertical acceleration must follow the comfort range following ISO 2631-1 as well as the pitch rate amplitude were remarkably reduced.
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