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液压控制器的设计与实现
引用本文:文小燕. 液压控制器的设计与实现[J]. 自动化与仪器仪表, 2020, 0(3): 152-155
作者姓名:文小燕
作者单位:榆林学院能源工程学院
摘    要:液压控制器是一种具有控制精度高、响应速度快和输出功率大特点的控制元件,具有极高的应用价值,可广泛应用到诸多领域中。当前,液压控制器在具体的使用中,存在处理高速与低速设备的速度匹配问等问题,影响液压控制器的应用。故此,文章选择模块化设计方式、高速处理速度DSP为核心控制芯片、丰富通讯接口、4轴驱动能力等技术措施,进一步完成对液压控制器的优化设计,并借助仿真模拟,确定改进后的液压控制器具有高性能、高响应速度等特点,可有效保障相关设备的稳定运行,实现行业的发展与进步。

关 键 词:液压控制器  设计  实现  FPGA  伺服系统

Design and implementation of hydraulic controller
WEN Xiaoyan. Design and implementation of hydraulic controller[J]. Automation & Instrumentation, 2020, 0(3): 152-155
Authors:WEN Xiaoyan
Affiliation:(School of Energy Engineering,Yulin 719000,China)
Abstract:Hydraulic controller is a control element with high control accuracy,fast response speed and large output power.It has high application value and can be widely applied to many fields.At present,in the specific use of the hydraulic controller,t here is a problem of speed matching between high speed and low speed equipment,which affects the application of the hydraulic controller.Therefore,modular design,high processing speed of DSP is choiced as the core control chip,and rich communication interface,4 axis drive capability and other technical measures,is further completed optimization design of the hydraulic controller.By means of simulation,the improved hydraulic control apparatus is determined with high performance and high response speed,stable operation and effective protection of related equipment,to achieve the industry’s development and progress.
Keywords:hydraulic controller  design  implementation  FPGA  servo systedm
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