电力系统自动化
電力繫統自動化
전력계통자동화
AUTOMATION OF ELECTRIC POWER SYSTEMS
2015年
8期
92-97
,共6页
李长生%张合%曹娟%刘明
李長生%張閤%曹娟%劉明
리장생%장합%조연%류명
磁共振耦合%无线电能传输%功率特性%效率特性%能效优化控制
磁共振耦閤%無線電能傳輸%功率特性%效率特性%能效優化控製
자공진우합%무선전능전수%공솔특성%효솔특성%능효우화공제
magnetic resonance coupling%wireless power transmission%power characteristics%efficiency characteristics%optimal control for energy and efficiency
功率和效率是电能传输系统的两个重要指标,利用理论分析结合实验研究的方法,探讨磁共振耦合无线电能传输系统的功率和效率传输特性。分析指出负载功率与系统效率频率响应曲线均存在分叉现象,收发端参数相同的传输系统的负载功率频率响应曲线呈近似对称形状,分叉现象消失前的负载功率不随收发端距离的变化而变化;参数非对称系统频率分叉时存在主从共振频率之分,且负载功率会随收发端距离的增大先增大后减小。理论推导出系统临界耦合系数及功率最优传输条件下的收发端优化耦合系数数学表达式。针对峰值功率与峰值效率工作频率点不重合的特性,提出了基于信息反馈的能效优化控制策略,借助能量传输通道,利用负载调制技术将接收端工作状态向发送端实时反馈,实现能量传输过程的闭环控制。文中理论分析结论与实验结果相一致。
功率和效率是電能傳輸繫統的兩箇重要指標,利用理論分析結閤實驗研究的方法,探討磁共振耦閤無線電能傳輸繫統的功率和效率傳輸特性。分析指齣負載功率與繫統效率頻率響應麯線均存在分扠現象,收髮耑參數相同的傳輸繫統的負載功率頻率響應麯線呈近似對稱形狀,分扠現象消失前的負載功率不隨收髮耑距離的變化而變化;參數非對稱繫統頻率分扠時存在主從共振頻率之分,且負載功率會隨收髮耑距離的增大先增大後減小。理論推導齣繫統臨界耦閤繫數及功率最優傳輸條件下的收髮耑優化耦閤繫數數學錶達式。針對峰值功率與峰值效率工作頻率點不重閤的特性,提齣瞭基于信息反饋的能效優化控製策略,藉助能量傳輸通道,利用負載調製技術將接收耑工作狀態嚮髮送耑實時反饋,實現能量傳輸過程的閉環控製。文中理論分析結論與實驗結果相一緻。
공솔화효솔시전능전수계통적량개중요지표,이용이론분석결합실험연구적방법,탐토자공진우합무선전능전수계통적공솔화효솔전수특성。분석지출부재공솔여계통효솔빈솔향응곡선균존재분차현상,수발단삼수상동적전수계통적부재공솔빈솔향응곡선정근사대칭형상,분차현상소실전적부재공솔불수수발단거리적변화이변화;삼수비대칭계통빈솔분차시존재주종공진빈솔지분,차부재공솔회수수발단거리적증대선증대후감소。이론추도출계통림계우합계수급공솔최우전수조건하적수발단우화우합계수수학표체식。침대봉치공솔여봉치효솔공작빈솔점불중합적특성,제출료기우신식반궤적능효우화공제책략,차조능량전수통도,이용부재조제기술장접수단공작상태향발송단실시반궤,실현능량전수과정적폐배공제。문중이론분석결론여실험결과상일치。
Power and efficiency are two important indexes for power transmission systems.By theoretical analysis combined with experiments,the transmission characteristics of power and efficiency for the wireless power transmission system based on magnetic resonance coupling are researched.The results show that there is the bifurcating phenomenon in both the bearing power and the frequency response curves of system efficiency.The bearing power and frequency response curves of a transmitting system with identical parameters at the transmitting and receiving terminals appear to be approximately symmetric in shape.The bearing power before bifurcation vanishes does not vary with the change in distance between transmitting and receiving terminals.There is the difference between the primary and secondary resonance frequencies when the frequency is bifurcated for asymmetrical systems,and the bearing power will be enhanced first and then declined with an increase in the transmission distance.Mathematical expressions for critical coupling coefficient and transmitting and receiving terminals optimization coupling coefficient for optimal power transmission are deduced.In view of the feature that the peak power and peak efficiency working frequency points do not coincide,an information feedback-based energy efficiency optimal control strategy is proposed.In addition,by the aid of the energy transmitting channel,the work state is fed back to the transmitting terminal using the load modulating technique to realize closed loop control of the energy transmission process.The conclusions drawn in the paper are in agreement with experimental results.