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Why Can VLANs Block Smart Home Server Discovery?
VLANs separate broadcast domains, so discovery fails unless the gateway relays the required multicast traffic and permits the later unicast connection.
How Does Sensor Retention Drive Smart Home Server Storage?
Sensor retention multiplies storage through sample frequency, entity count, database overhead, indexes, backups, and years of raw or rolled-up history.
Why Do Out-of-Order Events Break Smart Home Server Automations?
Out-of-order events break automations when arrival order is mistaken for real-world order, letting stale updates overwrite newer state or trigger late actions.
Why Does Local Voice Need Low Latency From a Home AI Server?
Local voice needs low end-to-end latency because delays accumulate across listening, transcription, intent, device action, and spoken response stages.
Why Process Camera Events Before Saving Them to a Home NVR?
Processing camera events before retention turns raw motion into tracked, filtered context so a home NVR saves more useful footage and metadata.
Why Does a Smart Home Server Depend on Multiple Matter Controllers?
A smart home server needs multiple Matter controllers only when several platforms require independent local access, trust, automations, or redundancy.
How Does a Thread Border Router Connect to a Smart Home Server?
A Thread border router routes IPv6 packets between the low-power Thread mesh and the home LAN; the server’s Matter controller handles device control.
Why Do MQTT Messages Change Smart Home Server State After Reboot?
A reboot creates a new MQTT subscription timeline, so retained, queued, discovery, and availability messages can rebuild or alter server state.
