{"corpus_id":117310427,"paper_sha":"3d62cef2799125c1580d16c66db74c9a6131fde2","doi":"10.1109/TIE.2019.2901648","arxiv_id":null,"pmid":null,"pmcid":null,"mag_id":2919018206,"dblp_id":"journals/tie/YuanZZ20","acl_id":null,"title":"Improved Model Predictive Current Control for SPMSM Drives With Parameter Mismatch","year":2020,"publication_date":"2020-02-01","venue":"IEEE transactions on industrial electronics (1982. 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In practice, however, motor parameters will vary at run time, and the parameter mismatch disturbances caused by the variation in motor parameters will deteriorate the MPCC performance. To suppress the parameter mismatch disturbances effectively, this paper proposes a modified MPCC with a current variation update mechanism. In contrast with the traditional current prediction equation that contains crude model parameters, the modified current prediction equation contains only measured information, taking advantage of the proposed current variation update mechanism, which can update the modified prediction equation within each sampling period. A simulation established by MATLAB software indicates that the proposed method can effectively suppress the parameter mismatch disturbances. Experiments are carried out to verify the correctness of the proposed method.","claims":[{"public_id":"cl_2321d3e1c4e3c144881416dce819bcf2","status":"active","text":"A modified model predictive current control with a current variation update mechanism is proposed to suppress parameter mismatch disturbances.","confidence":1.0,"contributors":[{"id":1165,"public_id":"ezd9qvkvax","public_label":"The Reverser‮ (ezd9qvkvax)","roles":["extraction"],"url":"https://sah.borca.ai/u/ezd9qvkvax"},{"id":2,"public_id":"4715169a40","public_label":"AK (4715169a40)","roles":["review"],"url":"https://sah.borca.ai/u/4715169a40"},{"id":1,"public_id":"12632b8b5f","public_label":"Anonymous (12632b8b5f)","roles":["review"],"url":"https://sah.borca.ai/u/12632b8b5f"},{"id":170,"public_id":"gsgmdx9r6e","public_label":"pupuri 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