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We denote this problem by the term event-synchronisation error.
So far we have assumed perfect event-synchronisation in all clusters.
Figure 6 Throughput when each STA in C i suffers from event-synchronisation error with probability.
In this chapter we assume that event-synchronisation errors occur due to decoding errors.
The analysis of event-synchronisation errors shows that the CB-CSMA/CA is relatively robust to the event-synchronisation error and in the worst case it performs similar to the standard CSMA/CA.
We evaluate the impact of event-synchronisation errors on the network throughput under saturation condition analytically and by simulations.
bWe denote all errors which cause different backoff window values at nodes within a same cluster, as event-synchronisation error.
As it is expected, an event-synchronisation error leads to throughput loss and the aggregate throughput decreases when increases.
Then we extend the scenario to a general case in which each STA i has an event-synchronisation probability of.
An event-synchronisation error can originate from different types of errors, including decoding errors on control frames and hidden nodes.
In this section we study the impact of event-synchronisation errors on the throughput performance of the CB-CSMA/CA.
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