双半桥功率变换器的非线性控制分配策略

IF 6.4 2区 计算机科学 Q1 AUTOMATION & CONTROL SYSTEMS
Ricardo de Castro;Rui Esteves Araujo;Jonathan Brembeck
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引用次数: 0

摘要

本文主要研究双半桥变换器的非线性控制算法设计。我们提出了一种双层控制器来调节DHB的电流和电压。第一层利用控制变量的变化来获得DHB的准线性表示,允许应用简单的线性控制器来调节电流和功率流。第二层采用非线性控制分配算法来选择满足第一控制层指定的(伪)功率设定值的控制动作;它还可以最小化DHB中的峰对峰电流,并强制执行电压平衡约束。我们将DHB和这种新的控制策略应用于由电池和超级电容器组成的混合储能系统的潮流管理。数值模拟结果表明,与最先进的方法相比,我们的控制算法能够在很宽的工作范围内保持良好的瞬态行为,同时将峰值电流降低高达80%。双半桥(DHB)是一类重要的转换器,广泛应用于实际应用,包括汽车和可再生能源。尽管它们具有电流隔离、零电压开关和双向功率流等优点,但由于其高度非线性响应,该转换器的控制算法设计具有挑战性。在这项工作中,我们提供了一个新的控制框架,允许设计人员获得转换器的线性输入到状态表示,并“取消”主要的非线性。本文还介绍了参数空间整定技术的应用,该技术允许设计者合成满足暂态、抗干扰和鲁棒性要求的DHB控制器。调优方法提供了一组可能满足控制规范的控制器增益(而不仅仅是单个值)。这使应用工程师能够在满足控制要求的预认证参数空间内对控制器增益进行微调,从而提供另一个重要的实际好处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Nonlinear Control Allocation Strategy for Dual Half Bridge Power Converters
This work focuses on designing nonlinear control algorithms for dual half-bridge converters (DHBs). We propose a two-layer controller to regulate the current and voltage of the DHB. The first layer utilizes a change in the control variable to obtain a quasi-linear representation of the DHB, allowing for the application of simple linear controllers to regulate current and power flow. The second layer employs a nonlinear control allocation algorithm to select control actions that fulfill (pseudo) power setpoints specified by the first control layer; it also minimizes peak-to-peak currents in the DHB and enforces voltage balance constraints. We apply the DHB and this new control strategy to manage power flow in a hybrid energy storage system comprising of a battery and supercapacitors. Numerical simulation results demonstrate that, in comparison with state-of-the-art approaches, our control algorithm is capable of maintaining good transient behavior over a wide operating range, while reducing peak-to-peak current by up to 80%. Note to Practitioners—Dual half bridges (DHB) are an important class of converters that is used in a wide range of practical applications, including automotive and renewable energies. Despite their benefits—such as galvanic isolation, zero-voltage switching, and bidirectional power flow—the design of control algorithms for this converter is challenging due to its highly nonlinear response. In this work, we provide a new control framework that allows the designer to obtain a linear input-to-state representation of the converter and to “cancel” the dominant nonlinearities. The paper also presents the application of the parameter space tuning technique, which allows the designer to synthesize DHB controllers that fulfill transient, disturbance rejection, and robustness requirements. The tuning approach provides a set of possible controller gains that fulfill the control specifications (and not just a single value). This enables the application engineer to perform fine-tuning of the controller gains within a pre-certified parameter space that satisfies the control requirements, providing another important practical benefit.
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来源期刊
IEEE Transactions on Automation Science and Engineering
IEEE Transactions on Automation Science and Engineering 工程技术-自动化与控制系统
CiteScore
12.50
自引率
14.30%
发文量
404
审稿时长
3.0 months
期刊介绍: The IEEE Transactions on Automation Science and Engineering (T-ASE) publishes fundamental papers on Automation, emphasizing scientific results that advance efficiency, quality, productivity, and reliability. T-ASE encourages interdisciplinary approaches from computer science, control systems, electrical engineering, mathematics, mechanical engineering, operations research, and other fields. T-ASE welcomes results relevant to industries such as agriculture, biotechnology, healthcare, home automation, maintenance, manufacturing, pharmaceuticals, retail, security, service, supply chains, and transportation. T-ASE addresses a research community willing to integrate knowledge across disciplines and industries. For this purpose, each paper includes a Note to Practitioners that summarizes how its results can be applied or how they might be extended to apply in practice.
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