通信电源技术
通信電源技術
통신전원기술
TELECOM POWER TECHNOLOGIES
2014年
3期
58-61
,共4页
独立光伏系统%循环寿命%独立均衡模块%能量转移
獨立光伏繫統%循環壽命%獨立均衡模塊%能量轉移
독립광복계통%순배수명%독립균형모괴%능량전이
stand-alone photovoltaic power system%cycle life%independent equalization module%energy transfer
独立光伏 VRLA蓄电池储能系统是由多个单体电池串联而成,由于单体电池内阻、电压和容量的不一致,导致使用过程中差别扩大,使电池组循环寿命缩短。通过分析蓄电池不一致的原因,针对非耗散型均衡控制电路,深入研究电池组均衡充电控制的电路模型,并在此基础上提出了一种简单、高效、高可靠性的均衡充电控制方案。该方案中的 PWM分流模块能自动实现单体电池间的能量转移,从而能逐步减小电池组的不一致性,它能保证电池组中所有电池单体在充电中后期都处在同一充电深度。实验结果表明,该电路能够实现电池单体间高效、快速的电压均衡,可有效避免电池单体过充和过放,大大延长了蓄电池的使用寿命。
獨立光伏 VRLA蓄電池儲能繫統是由多箇單體電池串聯而成,由于單體電池內阻、電壓和容量的不一緻,導緻使用過程中差彆擴大,使電池組循環壽命縮短。通過分析蓄電池不一緻的原因,針對非耗散型均衡控製電路,深入研究電池組均衡充電控製的電路模型,併在此基礎上提齣瞭一種簡單、高效、高可靠性的均衡充電控製方案。該方案中的 PWM分流模塊能自動實現單體電池間的能量轉移,從而能逐步減小電池組的不一緻性,它能保證電池組中所有電池單體在充電中後期都處在同一充電深度。實驗結果錶明,該電路能夠實現電池單體間高效、快速的電壓均衡,可有效避免電池單體過充和過放,大大延長瞭蓄電池的使用壽命。
독립광복 VRLA축전지저능계통시유다개단체전지천련이성,유우단체전지내조、전압화용량적불일치,도치사용과정중차별확대,사전지조순배수명축단。통과분석축전지불일치적원인,침대비모산형균형공제전로,심입연구전지조균형충전공제적전로모형,병재차기출상제출료일충간단、고효、고가고성적균형충전공제방안。해방안중적 PWM분류모괴능자동실현단체전지간적능량전이,종이능축보감소전지조적불일치성,타능보증전지조중소유전지단체재충전중후기도처재동일충전심도。실험결과표명,해전로능구실현전지단체간고효、쾌속적전압균형,가유효피면전지단체과충화과방,대대연장료축전지적사용수명。
In energy storage of stand-alone photovoltaic system,battery string with many cells in series connection can provide higher voltage.But for each cell,any slight voltage difference can be amplified in the charging and discharging cy-cles.Unbalanced cell voltage in battery string will give rise to serious over-charging or over-discharging,and decrease the total storage capacity and the battery cycle life.Therefore,maintaining cell voltage at an equal charge/discharge level is significant for enhancing the battery cycle life.Aiming at the non dissipative-type equalization circuits,the circuit model of battery equalization charge was studied,and an equalization charge control strategy which can not only achieves quick charge but also increases the battery cycle life was proposed.According to the proposed charge control strategy,a control-lable PWM divergence module can automatically realize energy transfer between cells and overcome dissimilarity among all batteries.Experiment shows that high energy transmission efficiency and rapid voltage equalization are achieved,and the battery overcharge or over discharge can be avoided and extend storage battery lifetime.