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Two Stage Flow Regulation Valve Control Optimization by Software Techniques and Mathematics of Digital Systems Approach

机译:两级流量调节阀控制优化软件技术和数学数字系统方法

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The increased systems complexity and performance request for electro-hydraulic applications, ask for more performing electronic systems and control functions. The new more performing microcontrollers and efficient cross compilers, encourage the floating point mathematics usage in the software control routines, useful to directly reuse the routines generated by the simulation tools, despite the lack of control for precise resulting routine execution time. The paper describes the improvements in performance of a practical experience carried out on an electronic system optimization managing an electro-hydraulic two stage directional valve for vehicular applications. A deeper analysis done on the software side of the application, revealed that a custom firmware setup and local mathematical software impolementation optimizations, led to an optimal system configuration for performance. Here it is shown that, without lack of precision, fixed point mathematics, locally optimized, and a higher attention paid to tasks timing, results in a more performing software schedule executed by the embedded hardware, even if more instructions are executed due to the necessary rescaling of factors needed by the requested precision and if and more control tasks are activated.
机译:增加的系统复杂性和电动液压应用的性能请求,要求更多执行电子系统和控制功能。尽管缺乏控制,但是在软件控制例程中,可以在软件控制例程中进行浮点数数学使用,这将在软件控制例程中进行浮点数学使用,尽管缺乏控制,可直接重复使用模拟工具生成的例程。本文介绍了对用于车辆应用的电动液压两级方向阀的电子系统优化进行的实际经验的性能的改进。在应用程序的软件方面进行了更深入的分析,揭示了自定义固件设置和本地数学软件励磁优化,导致性能最佳系统配置。这里显示,在没有缺乏精确度的情况下,定期优化的定期优化和对任务时序的更高的注意力,导致由嵌入式硬件执行的更加执行的软件计划,即使由于必要而执行更多指令激活所请求的精度以及更多控制任务所需的因素的重新激活。

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