光伏系统
钥匙(锁)
计算机科学
终端(电信)
群(周期表)
算法
计算机网络
工程类
电气工程
化学
有机化学
计算机安全
作者
Yumeng Feng,Bin Xu,Wenting Wang,Yong Li,Sun Li
摘要
In the era of green energy development, distributed photovoltaics (PV) are experiencing rapid growth. Currently, distributed PV has become a crucial force in national energy transition and power supply security. However, the largescale integration of numerous uncontrollable PV devices poses significant challenges to grid security, which has drawn substantial attention at the national level. At present, the group scheduling and group control mechanism is widely recognized as an effective solution for integrating low-voltage distributed PV into the grid. Nevertheless, due to practical limitations such as resource constraints and difficulties in upgrading, the secure and efficient transmission of control instructions to devices has become an urgent challenge. This study proposes an innovative lightweight dynamic group key management method for a hybrid network of public and private systems, supporting dynamic group formation, on-demand group joining, and flexible group leaving of devices. This method reduces communication and computational overhead within PV device groups, achieves efficient and secure group key updates, ensures the forward and backward security of keys, addresses the challenge of efficient and secure authentication for large-scale terminals, and significantly enhances the network security level of the digital power grid.
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