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The system model consists of a power manager (PM), a service provider (processor), a service requestor (input from sensors) and a service request queue (memory) as shown in Figure 2.
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There are about 400 service requests in the queue, resulting in about a yearlong wait for routine work, according to a city report.
For a specific RS i, its probability of rejecting a relay service request can be obtained by resorting to an M/M/S/S queueing model [20, 21], where the customer arrival process follows the Poisson distribution, the service time follows the exponential distribution, there are S servers, and there is no waiting room.
The latter models our system as a closed queuing network considering multiple resources, different classes of devices based on their service request patterns and multiple workload mixes [18].
service request.
Moving requests from "request queue" to the "dispatch queue".
Fig. 20 Request queue processing structures.
The "request queue" is a linked-list of requests structures.
Dequeuing I/O request from request queue (RQ) to staging queues (SQ) Let R denote the set of requests currently present in "request queue".
Let P denote the set of processes which have their requests currently enqueued in request queue.
"Request" structures are then staged in a linked-list called request queue.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com