Precise positioning method, system and device based on ultra-wideband technology
An ultra-wideband technology and precise positioning technology, which is applied in the field of combining the CTK algorithm based on the principle of signal time difference of arrival and the least mean square algorithm, can solve the problem that the positioning effect does not meet the high-precision positioning requirements, and achieve high positioning accuracy and multi-path resistance Fading, easy-to-digitize effects
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Embodiment 1
[0058] like figure 1 As shown, this embodiment provides a precise positioning method based on ultra-wideband technology. This embodiment uses this method as an example to illustrate the server. It can be understood that this method can also be applied to terminals, and can also be applied to The terminal, the server and the system are implemented through the interaction between the terminal and the server. The server can be an independent physical server, or a server cluster or distributed system composed of multiple physical servers, or it can provide cloud services, cloud database, cloud computing, cloud function, cloud storage, network server, cloud communication, intermediate Cloud servers for basic cloud computing services such as software services, domain name services, security service CDN, and big data and artificial intelligence platforms. The terminal may be a smart phone, a tablet computer, a laptop computer, a desktop computer, a smart speaker, a smart watch, etc....
Embodiment 2
[0081] This embodiment provides a precise positioning system based on ultra-wideband technology.
[0082] A precise positioning system based on ultra-wideband technology, including:
[0083] An acquisition module configured to: acquire the distance signal between the ultra-wideband tag and the detection base station when the ultra-wideband signal is received by the detection base station;
[0084] The motion trajectory generation module is configured to: use Chan's algorithm to obtain the estimated value of the ultra-wideband tag according to the distance signal between the ultra-wideband tag and the detection base station; use the estimated value of the ultra-wideband tag as the initial iteration value of the Taylor series to obtain Estimated value of UWB tag coordinates; use the UWB tag coordinate estimate as the optimal estimate at the previous moment in the Kalman filter algorithm to make a preliminary estimate of the tag location results, and obtain a preliminary estimate...
Embodiment 3
[0086] This embodiment provides a precise positioning method based on ultra-wideband technology.
[0087] A precise positioning method based on ultra-wideband technology, including:
[0088] The ultra-wideband tag installed on the object to be positioned emits an ultra-wideband signal carrying the ultra-wideband tag;
[0089] At least four detection base stations fixed on the same level receive the ultra-wideband signal transmitted by the ultra-wideband tag;
[0090] The detection base station generates and carries the distance signal between the ultra-wideband tag and the detection base station when the detection base station receives the ultra-wideband signal and transmits it to the cloud server;
[0091] The cloud server first uses Chan's algorithm to calculate the estimated value of the UWB tag based on the distance signal between the UWB tag and the detection base station, and then uses the Taylor series expansion method to calculate the estimated value of the UWB tag co...
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