The impacts of serious theft on a solar asset owner can result in lost revenues, lost energy generation and sometimes lost insurance and ability to operate.
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A company spokesperson told pv magazine that the problem has since been resolved. The state-run Dutch Radiocommunications Agency has launched an investigation into whether PV inverters pose a threat to the cybersecurity of the electricity system in the Netherlands, according to Dutch Minister for Climate and Energy Rob Jetten.
In a document published on the Dutch parliament's website, Jetten said that Internet of Things devices such as PV inverters can pose a risk to the electricity grid. “To mitigate the risks of these devices, we focus on prevention, awareness, and additional legislation that makes products more resilient to digital attacks,” he said.
If only a few inverters have bad voltage settings programmed, the grid likely wouldn’t feel much of an impact. But when bad software is controlling a large aggregation of smart inverters and moving their voltages simultaneously in the wrong direction, it could cause the grid to collapse.
They’ve found some promising solutions to inevitable hacks, but also some serious challenges that come with the growing proliferation of smart inverters. Any device connected to the internet could be in danger of being hacked, even smart inverters.
“We really want to avoid the collapse of the system and facilitate speedy reconnection.” Arnold and his co-project lead and staff scientist at the lab, Sean Peisert, have discovered a relatively simple and effective solution to fighting cyber threats to smart inverters — using other, uncompromised smart inverters to neutralize cyberattacks.
The Berkeley Lab scientists’ software solution can be housed inside individual smart inverters, on a utility’s back-end system or inverter manufacturer’s back-end system. “You don’t need a sophisticated communications network that has to activate when an attack takes place. You don’t need a large coordinated response.
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