Ventilation control apparatus and method
Abstract
A ventilation control apparatus and method are provided. The apparatus comprises a storage, a ventilation apparatus, and a processor. The storage stores a plurality of first historical sensing data corresponding to a plurality of first time intervals and an activation condition. The apparatus calculates a plurality of deviation values corresponding to the first time intervals based on the first historical sensing data. The apparatus determines an adjustment parameter based on the deviation values. The apparatus updates the activation condition based on the adjustment parameter. The apparatus transmits a first control signal corresponding to the adjustment parameter to the ventilation apparatus to instruct the ventilation apparatus to operate based on the activation condition.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A ventilation control apparatus, comprising:
a storage, being configured to store a plurality of first historical sensing data corresponding to a plurality of first time intervals and an activation condition; a ventilation apparatus, wherein the ventilation apparatus corresponds to the activation condition; and a processor, being electrically connected to the storage and the ventilation apparatus, and being configured to perform operations comprising:
calculating a plurality of deviation values corresponding to the first time intervals based on the first historical sensing data;
determining an adjustment parameter based on the deviation values;
updating the activation condition based on the adjustment parameter; and
transmitting a first control signal corresponding to the adjustment parameter to the ventilation apparatus to instruct the ventilation apparatus to operate based on the activation condition.
2 . The ventilation control apparatus of claim 1 , wherein each of the first historical sensing data corresponds to a highest gas values in each of the first time intervals.
3 . The ventilation control apparatus of claim 1 , wherein the deviation values indicate a difference between the first historical sensing data and a standard gas threshold.
4 . The ventilation control apparatus of claim 1 , wherein the activation condition corresponds to an activation threshold, and the adjustment parameter corresponds to a threshold adjustment value, and the processor is further configured to perform following operations:
transmitting the first control signal corresponding to the threshold adjustment value to the ventilation apparatus to instruct the ventilation apparatus to operate based on the activation threshold.
5 . The ventilation control apparatus of claim 1 , wherein the activation condition corresponds to an activation time, the adjustment parameter corresponds to a time adjustment value, and the processor is further configured to perform following operations:
transmitting the first control signal corresponding to the time adjustment value to the ventilation apparatus to instruct the ventilation apparatus to operate based on the activation time.
6 . The ventilation control apparatus of claim 1 , wherein the processor is further configured to perform following operations:
receiving a plurality of second historical sensing data corresponding to a second time interval from the ventilation apparatus; and generating a second control signal based on the second historical sensing data, wherein the second control signal is configured to determine an air volume of the ventilation apparatus.
7 . The ventilation control apparatus of claim 6 , wherein the second historical sensing data comprises a real-time sensing data, and the processor is further configured to perform following operations:
calculating a ratio between the real-time sensing data and a standard gas threshold to generate the second control signal.
8 . The ventilation control apparatus of claim 1 , wherein the processor is further configured to perform following operations:
receiving a plurality of second historical sensing data corresponding to a second time interval from the ventilation apparatus; and generating a third control signal based on the second historical sensing data, wherein the third control signal is configured to adjust an air volume of the ventilation apparatus.
9 . The ventilation control apparatus of claim 8 , wherein the processor is further configured to perform following operations:
calculating an integral value of the second historical sensing data in a third time interval; and comparing the integral value with a standard gas threshold to generate the third control signal.
10 . The ventilation control apparatus of claim 1 , wherein the processor is further configured to perform following operations:
receiving a plurality of second historical sensing data corresponding to a second time interval from the ventilation apparatus; and generating a second control signal and a third control signal based on the second historical sensing data, wherein the second control signal is configured to determine an air volume of the ventilation apparatus, and the third control signal is configured to adjust the air volume of the ventilation apparatus.
11 . A ventilation control method, being adapted for use in an electronic apparatus, wherein the electronic apparatus comprises a ventilation apparatus, and the ventilation control method comprises:
calculating, based on a plurality of first historical sensing data of a plurality of first time intervals, a plurality of deviation values corresponding to the first time intervals; transmitting a first control signal corresponding to an adjustment parameter to the ventilation apparatus, wherein the adjustment parameter is determined based on the deviation values; and instructing the ventilation apparatus to operate based on an activation condition, wherein the activation condition is updated based on the adjustment parameter.
12 . The ventilation control method of claim 11 , wherein each of the first historical sensing data corresponds to a highest gas values in each of the first time intervals.
13 . The ventilation control method of claim 11 , wherein the deviation values indicate a difference between the first historical sensing data and a standard gas threshold.
14 . The ventilation control method of claim 11 , wherein the activation condition corresponds to an activation threshold, the adjustment parameter corresponds to a threshold adjustment value, and the ventilation control method further comprises following steps:
transmitting the first control signal corresponding to the threshold adjustment value to the ventilation apparatus to instruct the ventilation apparatus to operate based on the activation threshold.
15 . The ventilation control method of claim 11 , wherein the activation condition corresponds to an activation time, the adjustment parameter corresponds to a time adjustment value, and the ventilation control method further comprises following steps:
transmitting the first control signal corresponding to the time adjustment value to the ventilation apparatus to instruct the ventilation apparatus to operate based on the activation time.
16 . The ventilation control method of claim 11 , wherein the ventilation control method further comprises following steps:
receiving a plurality of second historical sensing data corresponding to a second time interval from the ventilation apparatus; and generating a second control signal based on the second historical sensing data, wherein the second control signal is configured to determine an air volume of the ventilation apparatus.
17 . The ventilation control method of claim 16 , wherein the second historical sensing data comprises a real-time sensing data, and the ventilation control method further comprises following steps:
calculating a ratio between the real-time sensing data and a standard gas threshold to generate the second control signal.
18 . The ventilation control method of claim 11 , wherein the ventilation control method further comprises following steps:
receiving a plurality of second historical sensing data corresponding to a second time interval from the ventilation apparatus; and generating a third control signal based on the second historical sensing data, wherein the third control signal is configured to adjust an air volume of the ventilation apparatus.
19 . The ventilation control method of claim 18 , wherein the ventilation control method further comprises following steps:
calculating an integral value of the second historical sensing data in a third time interval; and comparing the integral value with a standard gas threshold to generate the third control signal.
20 . The ventilation control method of claim 11 , wherein the ventilation control method further comprises following steps:
receiving a plurality of second historical sensing data corresponding to a second time interval from the ventilation apparatus; and generating a second control signal and a third control signal based on the second historical sensing data, wherein the second control signal is configured to determine an air volume of the ventilation apparatus, and the third control signal is configured to adjust the air volume of the ventilation apparatus.Join the waitlist — get patent alerts
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