中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2014年
6期
889-896
,共8页
林鹤云%黄明明%陆婋泉%房淑华%黄允凯
林鶴雲%黃明明%陸婋泉%房淑華%黃允凱
림학운%황명명%륙호천%방숙화%황윤개
混合励磁同步电机%宽调速%矢量控制%铜耗最小化%弱磁控制
混閤勵磁同步電機%寬調速%矢量控製%銅耗最小化%弱磁控製
혼합려자동보전궤%관조속%시량공제%동모최소화%약자공제
hybrid excitation synchronous motor (HESM)%wide speed range%vector control%copper loss minimization%flux weakening control
混合励磁同步电机(hybrid excitation synchronous motor,HESM)具有调磁方便、调速范围宽等优势,在工业、军事领域应用前景广阔。该文在矢量控制和速度分区控制的基础上,针对 HESM 提出了一种铜耗最小化弱磁调速控制方法。该方法以电机铜耗最小化为目标,自适应地调节弱磁基速系数,在满足电枢端电压限制的条件下,对q轴电流、d轴电流与励磁电流进行最优配置。在深入分析弱磁基速系数对电机运行性能的影响的基础上,应用自适应控制方法对其进行调节以提高电机的调速范围、效率及动态特性等综合性能。最后,通过仿真和电机驱动实验验证了所提出的控制方法的正确性和有效性。结果表明,所提出的 HESM 弱磁控制方法,可实现电机综合性能的最优化控制。
混閤勵磁同步電機(hybrid excitation synchronous motor,HESM)具有調磁方便、調速範圍寬等優勢,在工業、軍事領域應用前景廣闊。該文在矢量控製和速度分區控製的基礎上,針對 HESM 提齣瞭一種銅耗最小化弱磁調速控製方法。該方法以電機銅耗最小化為目標,自適應地調節弱磁基速繫數,在滿足電樞耑電壓限製的條件下,對q軸電流、d軸電流與勵磁電流進行最優配置。在深入分析弱磁基速繫數對電機運行性能的影響的基礎上,應用自適應控製方法對其進行調節以提高電機的調速範圍、效率及動態特性等綜閤性能。最後,通過倣真和電機驅動實驗驗證瞭所提齣的控製方法的正確性和有效性。結果錶明,所提齣的 HESM 弱磁控製方法,可實現電機綜閤性能的最優化控製。
혼합려자동보전궤(hybrid excitation synchronous motor,HESM)구유조자방편、조속범위관등우세,재공업、군사영역응용전경엄활。해문재시량공제화속도분구공제적기출상,침대 HESM 제출료일충동모최소화약자조속공제방법。해방법이전궤동모최소화위목표,자괄응지조절약자기속계수,재만족전추단전압한제적조건하,대q축전류、d축전류여려자전류진행최우배치。재심입분석약자기속계수대전궤운행성능적영향적기출상,응용자괄응공제방법대기진행조절이제고전궤적조속범위、효솔급동태특성등종합성능。최후,통과방진화전궤구동실험험증료소제출적공제방법적정학성화유효성。결과표명,소제출적 HESM 약자공제방법,가실현전궤종합성능적최우화공제。
Hybrid excitation synchronous motor (HESM), with the superiority of field adjustable and wide speed operation range, has broad application prospects in industrial and military. This paper proposes a novel copper loss minimization flux weakening control method for HESM based on vector control and speed region control. The proposed method adaptively adjusts the coefficient of flux-weakening base speed using minimum copper loss as optimization target, so that q axis, d axis currents and exciting current are optimally allocated under the condition of armature terminal voltage limited. On the basis of analyzing the influences of the coefficient of flux-weakening base speed on the operation performance, an adaptive control method is adopted to adjust it for improving the comprehensive performance of HESM, including speed operation range, efficiency and dynamic behavior. The correctness and effectiveness of the proposed method are verified by simulation and experimental results, which shows that the comprehensive operational performance of HESM can be optimized by the proposed flux weakening control method.