后備vrla電池運(yùn)行中的問題及監(jiān)測解決方案.doc
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后備vrla電池運(yùn)行中的問題及監(jiān)測解決方案,后備vrla電池運(yùn)行中的問題及監(jiān)測解決方案本文共計12頁,9605字;摘要:分析后備鉛酸閥控蓄電池在運(yùn)行中存在的問題。通過蓄電池幾種常見失效模式,討論內(nèi)阻與蓄電池性能狀況的關(guān)系,以及目前的幾種蓄電池檢測、監(jiān)測的方法、其優(yōu)劣。基于蓄電池阻抗建立了一個智能化與網(wǎng)絡(luò)化的蓄電池監(jiān)測解決方案,并結(jié)合實(shí)際應(yīng)用論證該解決方案的可行性...
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后備VRLA電池運(yùn)行中的問題及監(jiān)測解決方案
本文共計12頁,9605字;
摘要:分析后備鉛酸閥控蓄電池在運(yùn)行中存在的問題。通過蓄電池幾種常見失效模式,討論內(nèi)阻與蓄電池性能狀況的關(guān)系,以及目前的幾種蓄電池檢測、監(jiān)測的方法、其優(yōu)劣?;谛铍姵刈杩菇⒘艘粋€智能化與網(wǎng)絡(luò)化的蓄電池監(jiān)測解決方案,并結(jié)合實(shí)際應(yīng)用論證該解決方案的可行性。
關(guān)鍵詞:VRLA電池,失效,內(nèi)阻,智能化
Abstract: This paper reveals the relationship between VRLA battery resistance and its performance through the analysis of some common modes of battery invalidation in operation. After analyzing and comparing the merits and demerits of the existing methods of measuring and monitoring VRLA batteries, the paper proposes a new intelligentized and networking model of monitoring based on VRLA battery resistance. The model is also tested in practical operation.
目錄:
一、鉛酸蓄電池在后備電源運(yùn)行中的問題以及產(chǎn)生的原因
二、內(nèi)阻與蓄電池性能的關(guān)系
1、蓄電池失水
2、負(fù)極硫酸化
3、正極板腐蝕
4、熱失控
三、蓄電池檢測、監(jiān)測技術(shù)
四、解決方案的實(shí)際基本要求
五、解決方案的基本模型
六、實(shí)際的應(yīng)用
七、結(jié)論
部分參考文獻(xiàn):
〖1〗朱松然 《蓄電池手冊》
〖2〗丁曉東,李中川,備用電源系統(tǒng)的蓄電池在線監(jiān)測技術(shù),電源世界,2000,5
〖3〗Dr. David Feder, Dr. Keith S. Champlin, Field & Laboratory Studies To Assess the State Of Health Of Valve-Regulated Lead Acid Batteries, Part I - Conductance/Capacity Correlation Studies Washington D.C. Oct 4-8, 19
〖4〗Dr. David, Mark J. Hlavac, Analysis and Interpretation of Conductance Measurements used to Assess the State-Of-Health of Valve Regulated Lead Acid Batteries, Part III Analytical Techniques Vancouver, Canada, October 30 - November 2 1994.
本文共計12頁,9605字;
摘要:分析后備鉛酸閥控蓄電池在運(yùn)行中存在的問題。通過蓄電池幾種常見失效模式,討論內(nèi)阻與蓄電池性能狀況的關(guān)系,以及目前的幾種蓄電池檢測、監(jiān)測的方法、其優(yōu)劣?;谛铍姵刈杩菇⒘艘粋€智能化與網(wǎng)絡(luò)化的蓄電池監(jiān)測解決方案,并結(jié)合實(shí)際應(yīng)用論證該解決方案的可行性。
關(guān)鍵詞:VRLA電池,失效,內(nèi)阻,智能化
Abstract: This paper reveals the relationship between VRLA battery resistance and its performance through the analysis of some common modes of battery invalidation in operation. After analyzing and comparing the merits and demerits of the existing methods of measuring and monitoring VRLA batteries, the paper proposes a new intelligentized and networking model of monitoring based on VRLA battery resistance. The model is also tested in practical operation.
目錄:
一、鉛酸蓄電池在后備電源運(yùn)行中的問題以及產(chǎn)生的原因
二、內(nèi)阻與蓄電池性能的關(guān)系
1、蓄電池失水
2、負(fù)極硫酸化
3、正極板腐蝕
4、熱失控
三、蓄電池檢測、監(jiān)測技術(shù)
四、解決方案的實(shí)際基本要求
五、解決方案的基本模型
六、實(shí)際的應(yīng)用
七、結(jié)論
部分參考文獻(xiàn):
〖1〗朱松然 《蓄電池手冊》
〖2〗丁曉東,李中川,備用電源系統(tǒng)的蓄電池在線監(jiān)測技術(shù),電源世界,2000,5
〖3〗Dr. David Feder, Dr. Keith S. Champlin, Field & Laboratory Studies To Assess the State Of Health Of Valve-Regulated Lead Acid Batteries, Part I - Conductance/Capacity Correlation Studies Washington D.C. Oct 4-8, 19
〖4〗Dr. David, Mark J. Hlavac, Analysis and Interpretation of Conductance Measurements used to Assess the State-Of-Health of Valve Regulated Lead Acid Batteries, Part III Analytical Techniques Vancouver, Canada, October 30 - November 2 1994.