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Development of New Electronically Controlled Hydraulic Unit for Various Applications

机译:开发新型应用的新型电子控制液压单元

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The use of hybrid, fuel cell electric, and pure electric vehicles is on the increase as part of measures to help reduce exhaust gas emissions and to help resolve energy issues. These vehicles use regenerative-friction brake coordination technology, which requires a braking system that can accurately control the hydraulic brakes in response to small changes in regenerative braking. At the same time, the spread of collision avoidance support technology is progressing at a rapid pace along with a growing awareness of vehicle safety. This technology requires braking systems that can apply a large braking force in a short time. Although brake systems that have both accurate hydraulic control and large braking force have been developed in the past, simplification is required to promote further adoption. This paper describes the following three items: (1) an examination of the brake system functions that realize the regenerative-friction brake coordination and collision avoidance support functions, (2) considerations and a proposal for a brake system that achieves the functions described in item (1) with a simple structure, and (3) development of core technology for controlling the wheel cylinder pressure in a brake system equipped with a hydraulic regulator.
机译:使用混合动力车,燃料电池电动和纯电动车辆随着有助于减少废气排放的一部分以及帮助解决能源问题的一部分,因此随着措施的一部分增加。这些车辆使用再生 - 摩擦制动配合技术,该配制技术需要制动系统,该制动系统可以响应于再生制动的小变化准确地控制液压制动器。与此同时,碰撞避免支持技术的传播正在以快速的速度进展,以及越来越令人越来越高的车辆安全意识。该技术需要制动系统,可以在短时间内施加大型制动力。尽管过去已经开发了具有精确液压控制和大型制动力的制动系统,但需要简化以促进进一步采用。本文介绍以下三项:(1)对制动系统功能的检查,该函数实现再生 - 摩擦制动协调和碰撞避免支持功能,(2)考虑和制动系统的提议,实现了项目中描述的功能(1)结构简单,(3)开发用于控制配备液压调节器的制动系统中的轮缸压力的核心技术。

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