We investigate an internet-of-things system where energy-harvesting devices send status updates to a common receiver using the irregular repetition slotted ALOHA (IRSA) protocol. Energy shortages in these devices can cause transmission failures that are unknown to the receiver, halting the decoding process. We resolve this issue by proposing a method for the receiver to perfectly identify these failures. Furthermore, we optimize the degree distribution of the protocol to ensure the freshness of the status updates. The optimized degree distribution offsets the negative impact of the potential transmission failures. Our numerical results show that, despite energy harvesting, IRSA can maintain a level of information freshness comparable to systems with unlimited energy.
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