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Safety-assured collaborative load management in smart grids

机译:安全可靠的智能电网协同负载管理

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When a power grid is overloaded, load shedding is a conventional way to combat the imbalance between supply and demand that may jeopardize the grid's safety. However, disconnected customers may be excessively inconvenienced or even endangered. With the emergence of demand-response based on cyber-enabled smart meters and appliances, customers may participate in solving the imbalance by curtailing their demands collaboratively, such that no single customers will have to bear a disproportionate burden of reduced usage. However, compliance or commitment to curtailment requests by untrusted users is uncertain, which causes an important safety concern. This paper proposes a two-phase load management scheme that (i) gives customers a chance to curtail their demands and correct a grid's undersupply when there are no immediate safety concerns, but (ii) falls back to conventional load shedding to ensure safety once the grid enters a vulnerable state. Extensive simulations based on a 37-bus electrical grid and traces of real electrical load demonstrate the effectiveness of this scheme. In particular, if customers are, as expected, sufficiently committed to the load curtailment, overloads can be resolved in real time by collaborative and graceful usage degradation among them, thereby avoiding unpleasant blackouts in existing practice.
机译:当电网过载时,减载是解决供需不平衡的传统方法,这种不平衡可能会危害电网的安全。但是,断开连接的客户可能会带来极大的不便甚至受到威胁。随着基于网络的智能电表和设备的需求响应的出现,客户可以通过协作减少需求来参与解决不平衡问题,从而使单个客户不必承担过多的减少使用量负担。但是,不确定的用户对减少请求的遵从或承诺是不确定的,这引起了重要的安全问题。本文提出了一种两阶段的负荷管理方案,(i)在没有紧急安全隐患的情况下,为客户提供减少其需求并纠正电网供不应求的机会,但是(ii)退回常规的负荷削减以确保一旦网格进入脆弱状态。基于37总线电网的大量仿真和真实的电力负载轨迹证明了该方案的有效性。特别是,如果客户如预期那样充分致力于减少负载,则可以通过协作和正常使用之间的降级来实时解决过载问题,从而避免现有做法中令人不快的停电。

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