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首页> 外文期刊>Jordan Journal of Mechanical and Industrial Engineering >Design of Mechanical and Electrical Control System of Mixed Liquid Gas Pressure Energy Storage Based on Maximum Power Point Tracking
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Design of Mechanical and Electrical Control System of Mixed Liquid Gas Pressure Energy Storage Based on Maximum Power Point Tracking

机译:基于最大功率点跟踪的混合液体气体压力储能机械和电气控制系统设计

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In order to solve the problem that the accuracy of the controller of the traditional mechanical control system is not high and the efficiency of the control system is too low, a mechanical control system based on maximum power point tracking is designed.Through the controller platform, the embedded microprocessor with arm architecture is used to design the basic peripheral circuit, and to improve the control accuracy of the controller, and to complete the hardware design of the system.According to the characteristics of the compression efficiency of the liquid pump, the energy storage device is modeled, the maximum power point tracking algorithm is used to control the speed of the motor, and the software design of the system is completed.Regarding the hardware and software design of the system, the mechanical and electrical control system design of the mixed liquid gas pressure energy storage device is realized.The experimental results show that the design system is basically consistent with the standard control value, the system efficiency is the largest, and the mechanical and electrical control accuracy of the mixed oil and gas energy storage is improved, and the active power can reach a stable state.
机译:为了解决传统机械控制系统的控制器的准确性而不是高的,控制系统的效率太低,设计了一种基于最大功率点跟踪的机械控制系统。通过控制器平台,具有ARM架构的嵌入式微处理器用于设计基本外围电路,并提高控制器的控制精度,并完成系统的硬件设计。根据液体泵的压缩效率的特性,能量存储设备建模,最大功率点跟踪算法用于控制电机的速度,并完成系统的软件设计。对系统的硬件和软件设计,机械和电气控制系统设计实现了混合液体气体压力储能装置。实验结果表明,设计系统基本上是一致的T具有标准控制值,系统效率是最大的,而混合油和气体储能的机械和电气控制精度得到改善,有功功率可以达到稳定状态。

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