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Closed-Loop Control of Chemical Injection Rate for a Direct Nozzle Injection System

机译:直接喷嘴喷射系统的化学喷射速率闭环控制

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摘要

To realize site-specific and variable-rate application of agricultural pesticides, accurately metering and controlling the chemical injection rate is necessary. This study presents a prototype of a direct nozzle injection system (DNIS) by which chemical concentration transport lag was greatly reduced. In this system, a rapid-reacting solenoid valve (RRV) was utilized for injecting chemicals, driven by a pulse-width modulation (PWM) signal at 100 Hz, so with varying pulse width the chemical injection rate could be adjusted. Meanwhile, a closed-loop control strategy, proportional-integral-derivative (PID) method, was applied for metering and stabilizing the chemical injection rate. In order to measure chemical flow rates and input them into the controller as a feedback in real-time, a thermodynamic flowmeter that was independent of chemical viscosity was used. Laboratory tests were conducted to assess the performance of DNIS and PID control strategy. Due to the nonlinear input–output characteristics of the RRV, a two-phase PID control process obtained better effects as compared with single PID control strategy. Test results also indicated that the set-point chemical flow rate could be achieved within less than 4 s, and the output stability was improved compared to the case without control strategy.
机译:为了实现特定地点和可变速率的农用农药施用,必须精确计量和控制化学药剂的注入速度。这项研究提出了一种直接喷嘴喷射系统(DNIS)的原型,通过该系统可以大大减少化学物质浓度的输送滞后。在该系统中,利用快速反应电磁阀(RRV)来注入化学药品,该阀由100 Hz的脉冲宽度调制(PWM)信号驱动,因此可以通过改变脉冲宽度来调整化学药品的注入速率。同时,采用闭环控制策略比例积分微分(PID)方法来计量和稳定化学注入速率。为了测量化学流量并将其作为实时反馈输入到控制器中,使用了与化学粘度无关的热力学流量计。进行了实验室测试以评估DNIS和PID控制策略的性能。由于RRV的非线性输入输出特性,与单PID控制策略相比,两相PID控制过程获得了更好的效果。测试结果还表明,与没有控制策略的情况相比,可以在不到4 s的时间内达到设定的化学流量,并且输出稳定性得到了提高。

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