Low-voltage contact cabinet self-adaptive control method, system and device based on temperature induction
A technology of self-adaptive control and liaison cabinet, applied in the field of low-voltage liaison cabinet, can solve the problem of insufficient intelligence of power distribution cabinet, and achieve the effect of improving intelligence and good temperature control effect.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0058] figure 1 The flow chart of the present application embodiment is given, and the temperature sensing method according to the present application, the self-adaptive control method based on the temperature sensing, can be performed by a temperature sensing low-pressure contact cabinet adaptive control device, the temperature-based temperature The inductive low-voltage contact cabinet adaptive control device can be implemented by hardware and / or software, and integrated in a computer device.
[0059] The adaptive control method based on temperature sensing low-pressure contact cabinet based on temperature sensing means is described below with reference to the temperature sensing low pressure contact cabinet. reference figure 1 The self-adaptive control method based on the temperature sensing low pressure contact cabinet includes:
[0060] S101: Receive temperature data acquired in real time; the temperature data includes cable temperature data and ambient temperature data.
...
Embodiment 2
[0071] Such as figure 2 As shown, the present embodiment provides the adaptive control method of the temperature sensing low pressure contact cabinet including the following steps:
[0072] S201: Receive temperature data acquired in real time, determines whether the temperature data is different from the temperature data received last time; the temperature data includes cable temperature data and ambient temperature data.
[0073] S202: When the temperature data is not at the same time, it is determined whether the temperature data exceeds the threshold range.
[0074] S203: When the temperature data exceeds the threshold range, the control execution unit is activated.
[0075] The above three implementation steps are identical to the examples. Correspondingly, the execution unit includes an environmental acquisition device, alarm device, the environmental acquisition device including a humidity sensor, an open flame sensor, a smoke sensor, a water level sensor, the alarm device c...
Embodiment 3
[0083] Such as image 3 As shown, the present embodiment provides the adaptive control method of the temperature sensing low pressure contact cabinet including the following steps:
[0084] S301: Receive the temperature data acquired by real-time, determines whether the temperature data is different from the temperature data received last time; the temperature data includes cable temperature data and ambient temperature data.
[0085] S302: The full period of time to collect the temperature data is divided into multiple time fragments; and each time the segment corresponds to a threshold range.
[0086] In this step, a full-time period of temperature data is collected is divided. For example, the real-time collection temperature data typically means that temperature data is collected 24 hours a day, and it is divided 24 hours, for example, it can be divided into morning, in the afternoon, in the middle of the night, and in the second half of the night, each time fragment is due to ...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


