Sensorless control of the hybrid double excitation synchronous aerogenerator in case of high wind speed

H. Chakir, H. Ouadi, F. Giri
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Abstract

This paper deals with the problem of the constant-power operating envelope at high speed in the wind energy conversion systems. The considered aero-generator involves a hybrid excitation synchronous generator (HESG). To operate at constant-power, it is recommended to use a feedback flux-weakening control, the hybrid excitation circuit is compatible with the extended-speed-range constant-power operation, the flux-weakening and the anti-windup controls that can be achieved simultaneously. In addition to this, an optimization of the electromagnetic torque is provided to improve the HESG efficiency. However, these controls require the measure of wind speed, rotor flux, rotor speed and aerodynamic torque, which are all difficult in practice and not very reliable. This paper presents a design of sensorless flux-weakening power controller. For the achievement of the above energetic goal without resorting to mechanical sensors, a control observation strategy is developed, based on the nonlinear model of the whole controlled system using only electrical variables measurements. The effectiveness of the proposed regulator is analyzed using tools from the Lyapunov stability. These theoretical results are proved by a series of simulations to show the contribution of hybrid excitation at a high wind speed.
混合双励磁同步风力发电机在大风速下的无传感器控制
本文研究了风电转换系统高速恒功率运行包络问题。所考虑的航空发电机包括一个混合励磁同步发电机(HESG)。恒功率运行时,建议采用反馈式弱磁控制,混合励磁电路与增速恒功率运行兼容,弱磁控制和防绕组控制可同时实现。此外,为了提高HESG效率,还对电磁转矩进行了优化。然而,这些控制需要测量风速、转子磁链、转子转速和气动转矩,这些在实践中都很困难,而且不太可靠。本文提出了一种无传感器消磁功率控制器的设计。为了在不借助机械传感器的情况下实现上述能量目标,基于整个被控系统的非线性模型,仅使用电变量测量,开发了一种控制观察策略。利用李雅普诺夫稳定性的工具分析了所提出的调节器的有效性。通过一系列的模拟验证了这些理论结果,表明了混合激励在高风速下的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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