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An Integrated Implementation of Two-Phase Interleaved PFC and Dual Motor Drive Using Single MCU With CLA

机译:使用带有CLA的单个MCU的两相交错式PFC和双电动机驱动器的集成实现

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摘要

Heating ventilation and air conditioning (HVAC) drives utilize variable speed control to maximize efficiency. Power factor correction (PFC) stage is used in the rectifier design in these applications to comply with regulations, such as IEC 61000-3-2, which limit the input current harmonics. Typically control of PFC and the motor stage is kept separate, due to limited CPU bandwidth, where fast is desired for PFC stage (up to 200 kHz) and motor inverter (10–20 kHz). This paper presents a MCU with control law accelerator (CLA) architecture, which enables integration of dual motor control and PFC on a single controller, for a cost sensitive application such as HVAC. In addition to cost reduction and performance improvement, the integration enables the control of the stages together. Also, the surplus bandwidth provided by the CLA, allows the execution of slow background tasks, diagnostics and communication. Integration challenges with software and system level details for the proposed solutions are highlighted in the paper. Additionally improvements to the PFC algorithm using a nonlinear control technique for better output voltage control under dynamic load conditions are presented.
机译:加热通风和空调(HVAC)驱动器利用变速控制来最大化效率。在这些应用中,功率因数校正(PFC)级用于整流器设计中,以符合诸如IEC 61000-3-2之类的法规,该法规限制了输入电流谐波。通常,由于CPU带宽有限,PFC和电机级的控制是分开的,PFC级(最高​​200 kHz)和电机变频器(10–20 kHz)需要较快的控制。本文介绍了一种具有控制律加速器(CLA)架构的MCU,该MCU可以将双电机控制和PFC集成在单个控制器上,适用于对成本敏感的应用,例如HVAC。除了降低成本和提高性能外,集成还可以一起控制各个阶段。而且,CLA提供的剩余带宽允许执行缓慢的后台任务,诊断和通信。本文重点介绍了针对所提出解决方案的软件和系统级详细信息的集成挑战。提出了使用非线性控制技术对PFC算法进行的改进,以在动态负载条件下实现更好的输出电压控制。

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