科技报告详细信息
Air Conditioner Compressor Performance Model
Lu, Ning ; Xie, YuLong ; Huang, Zhenyu
关键词: AIR CONDITIONERS;    AIR CONDITIONING;    BONNEVILLE POWER ADMINISTRATION;    COMPRESSORS;    ELECTRICITY;    EPRI;    MOTORS;    PERFORMANCE;    SIMULATION;    TESTING;    TRANSIENTS;   
DOI  :  10.2172/949142
RP-ID  :  PNNL-17796
PID  :  OSTI ID: 949142
Others  :  Other: 830403000
Others  :  TRN: US200909%%393
学科分类:能源(综合)
美国|英语
来源: SciTech Connect
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【 摘 要 】

During the past three years, the Western Electricity Coordinating Council (WECC) Load Modeling Task Force (LMTF) has led the effort to develop the new modeling approach. As part of this effort, the Bonneville Power Administration (BPA), Southern California Edison (SCE), and Electric Power Research Institute (EPRI) Solutions tested 27 residential air-conditioning units to assess their response to delayed voltage recovery transients. After completing these tests, different modeling approaches were proposed, among them a performance modeling approach that proved to be one of the three favored for its simplicity and ability to recreate different SVR events satisfactorily. Funded by the California Energy Commission (CEC) under its load modeling project, researchers at Pacific Northwest National Laboratory (PNNL) led the follow-on task to analyze the motor testing data to derive the parameters needed to develop a performance models for the single-phase air-conditioning (SPAC) unit. To derive the performance model, PNNL researchers first used the motor voltage and frequency ramping test data to obtain the real (P) and reactive (Q) power versus voltage (V) and frequency (f) curves. Then, curve fitting was used to develop the P-V, Q-V, P-f, and Q-f relationships for motor running and stalling states. The resulting performance model ignores the dynamic response of the air-conditioning motor. Because the inertia of the air-conditioning motor is very small (H<0.05), the motor reaches from one steady state to another in a few cycles. So, the performance model is a fair representation of the motor behaviors in both running and stalling states.

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