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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Experimental Investigation on Control of an Infinitely Variable Transmission System for Tidal Current Energy Converters
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Experimental Investigation on Control of an Infinitely Variable Transmission System for Tidal Current Energy Converters

机译:潮汐电流能量转换器无限可变变速器系统控制的实验研究

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High operation performance of a tidal current energy converter (TCEC) requires a gear transmission with a continuously variable speed ratio for low-speed and high-torque conditions. A nonlinear closed-loop control combined with an integral time-delay feedback control is developed to adjust the speed ratio of an infinitely variable transmission (IVT) system for TCECs. A speed ratio control for the IVT system involves a forward speed controller and a crank length controller for different tidal current speed ranges. The time-delay control is designed to reduce speed fluctuations of the output speed of the IVT with an accurate speed ratio. Experimental investigation was carried out to test the validity of the proposed control strategy for the IVT system. An instrumented rotation speed measurement system is designed so that quantities needed for the time-delay control variable can be measured. Experimental results show that the speed ratio of the IVT with the proposed control strategy can achieve an excellent tracking response for the desired constant output speed and reduce speed fluctuations of the output speed of the IVT by the time-delay feedback control.
机译:潮流能量转换器(TCEC)的高操作性性能需要具有连续变速比的齿轮传动,用于低速和高扭矩条件。开发了一种与积分时间延迟反馈控制结合的非线性闭环控制,以调整TCEC的无限变速器(IVT)系统的速度比。 IVT系统的速度比控制涉及前进速度控制器和用于不同潮流速度范围的曲柄长度控制器。时间延迟控制旨在以精确的速比降低IVT的输出速度的速度波动。进行了实验调查,以测试IVT系统所提出的控制策略的有效性。设计仪表旋转速度测量系统,从而可以测量时间延迟控制变量所需的数量。实验结果表明,随着时间延迟反馈控制,IVT与所提出的控制策略的速比可以实现所需的恒定输出速度的优异跟踪响应,并通过时滞反馈控制降低IVT的输出速度的速度波动。

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