Development of a Power Dependent Frequency Domain Model of an Inverter-driven Heat Pump

A. Collin, R. Langella, A. Testa, S. Yanchenko
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引用次数: 0

Abstract

This paper presents a power dependent frequency domain model (FDM) of an inverter-driven heat pump (Heating, Ventilation and Air-Conditioning) system for use in power system harmonic analysis. The FDM approach considered is the frequency coupling matrix (FCM) technique. Starting from a previously presented and experimentally validated time domain model (TDM), a detailed study on the impact of the operating power on the input current produces a set of FCMs. It is shown that the power dependent changes in the FCM elements can be accurately approximated using a polynomial function. As a consequence of this result, the power dependent changes are incorporated into the FDM using two different implementations - a (discretized) look-up table and simple (continuous) analytical functions - and compared. Monte Carlo Simulations confirm the ability of the power dependent FDMs to reproduce the input current characteristics of the TDM.
变频热泵功率相关频域模型的建立
本文提出了用于电力系统谐波分析的变频热泵系统的功率相关频域模型(FDM)。所考虑的FDM方法是频率耦合矩阵(FCM)技术。从先前提出并经过实验验证的时域模型(TDM)出发,详细研究了工作功率对输入电流的影响,产生了一组fcm。结果表明,FCM单元的功率相关变化可以用多项式函数精确地逼近。由于这个结果,使用两种不同的实现——(离散的)查找表和简单的(连续的)分析函数——将功率相关的变化合并到FDM中并进行比较。蒙特卡罗模拟证实了功率依赖的fdm能够再现时分分频的输入电流特性。
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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