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Scheduling of dual supercapacitor for longer battery lifetime in safety-critical embedded systems with power gating

机译:在具有电源门控的安全关键型嵌入式系统中安排双超级电容器以延长电池寿命

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The wake up of power gating (PG) components leads to flow of inrush current which quickly discharges the battery. An arrangement of instruction controlled hybrid battery supercapacitor (SC) elongates battery life in systems with PG. The present work improves a batterysingle SC system (BSC) model to its equivalent batterydual SC system (B2SC). Instructions: disconnect battery (db) and connect battery (cb) have been introduced along with architectural support for B2SC. During wakeup db disconnects (i) battery from the PG components, and (ii) either one or both of the SCs from the battery. Hence, simultaneously either both SCs can discharge or one can discharge while the other's charging. While cb connects the battery to the PG components and SCs. A suboptimal version of B2SC (B2SC(sopt)) is introduced, where the SCs are connected to the PG components requiring higher inrush current while rest remains connected to the battery. The efficacy of the proposed methods are evaluated on cardiac pacemaker, unmanned aerial vehicle and benchmark programmes. B2SC reduces battery ratecapacityeffect (Crate) by an average of 21.87% at the cost of average performance loss of 9.25%. (B2SC(sopt)) reduces Crate by an average of 29.37% at the cost of average performance loss of 16.87%.
机译:功率门控(PG)组件的唤醒导致涌入电流的流动,从而使电池快速放电。指令控制的混合电池超级电容器(SC)的布置可延长具有PG的系统中的电池寿命。本工作将单电池SC系统(BSC)模型改进为等效的双电池SC系统(B2SC)。说明:断开电池(db)和连接电池(cb)以及B2SC的体系结构支持已引入。在唤醒过程中,db断开(i)将电池与PG组件断开连接,以及(ii)将一个或两个SC与电池断开连接。因此,两个SC都可以同时放电,或者一个SC可以放电而另一个SC可以充电。而cb将电池连接到PG组件和SC。引入了次优版本的B2SC(B2SC(sopt)),其中SC连接到需要较高浪涌电流的PG组件,而其余部分则保持连接到电池。在心脏起搏器,无人飞行器和基准程序上评估了所提出方法的有效性。 B2SC将电池速率容量效应(Crate)平均降低21.87%,而平均性能损失为9.25%。 (B2SC(sopt))可使Crate平均降低29.37%,而平均性能损失为16.87%。

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