Intelligent energy information acquisition management method and system
An information collection and information management technology, applied in signal transmission systems, transmission systems, instruments, etc., can solve the problems of complicated processes, poor real-time performance, waste of resources, etc., to reduce energy consumption, ensure timeliness, and ultra-low power consumption. Effect
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Embodiment 1
[0074] Please refer to figure 1 and figure 2 , this embodiment provides a new intelligent energy information collection and management method different from the prior art, which can realize reasonable management and control of commonly used resources / energy such as water, electricity, gas, heat, etc. The method of this embodiment is based on the structure of " Energy information management center + star system gateway + remote energy meter terminal" system realization.
[0075] Specifically, such as figure 1 As shown, the system includes an information management center 1 , at least one system gateway 2 and at least one energy meter terminal 3 . Each system gateway 2 and at least one energy meter terminal 3 under its jurisdiction construct a single star-shaped communication network based on a wireless communication connection; the meter terminal determines its access to the network by attaching to the corresponding gateway. The structure usually includes multiple star-shap...
Embodiment 2
[0098] Please refer to figure 1 and image 3 , this embodiment is further expanded and refined on the basis of the above-mentioned embodiment 1, and the specific description is as follows:
[0099] The method of this embodiment enables the meter to work in two communication modes, one is the T1 random mode in which the unidirectional report only includes the latest metering data and the short-packet application message of the current operating state (sleep immediately after sending and wait for the next random time to arrive) Re-send the contract), referred to as T1 mode; the second is the T2 cycle mode designed to realize master-slave two-way communication (wait for receiving timeout and no downlink command to sleep), referred to as T2 mode. The random time threshold of T1 mode can be set, and the entry period of T2 mode can be set, and their values are determined according to actual demand or battery capacity.
[0100] In this way, the following effects can be achieved: ra...
Embodiment 3
[0114] Please refer to figure 1 , image 3 and Figure 4 , the present embodiment is further expanded on the basis of the above-mentioned second embodiment, adding a handheld terminal 4 to the system, and realizing corresponding functions through on-site meter reading. The specific instructions are as follows:
[0115] The method of this embodiment adds the HHU (handheld terminal) that can complete instant access to meters and gateways to the system, and realizes meter management or copying under special circumstances or scenarios, including reading and writing meter or gateway parameters , work behavior control, data and status reading, etc.
[0116] In this way, the following effects are achieved: HHU is used for auxiliary management of the entire energy system, when the following abnormal conditions occur on site:
[0117] 1. Some meters cannot communicate with the gateway because of the distance or the limitation of their own environment;
[0118] 2. Adding a new mete...
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