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A signal ranging and positioning method

A ranging method and signal technology, applied in wireless communication, service based on location information, electrical components, etc., can solve the problems of positioning accuracy decline, drop, etc., and achieve the effect of high accuracy and high distance estimation accuracy

Active Publication Date: 2017-05-17
HAIMEN BIWEI INTPROP SERVICE CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] After using OFDM to subcarrierize the channel, the transmission technology of loading and transmitting data on some subcarriers is OFDMA. The application of OFDMA in positioning proposed in the current literature is to divide the entire OFDM subcarriers into blocks. For example, an OFDM signal has 1024 subcarriers, 4 users (or transmitters, or base stations: depending on the situation), and the allocation is as follows: The first 256 subcarriers are allocated to user 1, and the next 256 subcarriers are allocated to user 2, and then 256 subcarriers are allocated to user 3, and the last 256 subcarriers are allocated to users. There is no problem with this allocation in terms of communication; in terms of positioning, such allocation will lead to a decrease in mean square bandwidth and a serious drop in positioning accuracy

Method used

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Embodiment 1

[0037] figure 2 Spectrum allocation for optimal ranging signals is described.

[0038] Such as Figure 11 and Figure 12 As shown, the ranging method of the signal is described in detail: the 0th and N-1 subcarriers are generated as high-level data source signals, and the middle N-2 subcarriers are all low-level data source signals, which are converted from serial to parallel. After Liye inverse transformation, it is converted from parallel to serial, and then the signal is amplified and then transmitted; the 0th and N-1 subcarriers are received as high level, and the middle N-2 subcarriers are all low level signals, and the signal Amplify, then convert the serial signal into a parallel signal, filter out the noise on the intermediate subcarrier after Fourier transform, and then convert the parallel signal into a serial signal, and at the same time, copy the original transmitted signal at the receiving place, and the local The oscillator converts the original transmission ...

Embodiment 2

[0044] Such as Figure 13 and Figure 14 As shown, the optimal signal positioning method, its ranging part is as in embodiment 1, the difference is that it includes k transmitters and a receiver, and simultaneously sends positioning signals from transmitters at different locations to seek location information, and receives them at one location The receiver receives, for the kth transmitter, k=1, 2, 3, 4, the k-1 and N+k-5 subcarriers are at high level, and the other N-2 subcarriers are at low level, and the transmitter The bandwidth of the signal is the same, the bandwidth of the subcarriers at both ends is the same, and the distance between the subcarriers is the same.

[0045] Signal positioning device, such as the signal ranging device shown in embodiment 1, which includes a plurality of transmitters and a receiver, the transmitted signal is an OFDMA signal, for the kth transmitter, k=1,2,3, 4: The k-1 and N+k-5 subcarriers are at high level, and the other N-2 subcarriers...

Embodiment 3

[0050] Figure 7 Frequency-domain representation of an optimal OFDMA ranging signal.

[0051] The best signal is the OFDMA signal, and the positioning system is: four transmitters send signals to a receiver at the same time, and the receiver detects the signals from all transmitters and estimates the position of the receiver itself. Assuming a common signal bandwidth [-B,B] for all transmitters, Figure 8 describes the spectrum allocation of the optimal positioning signal for each transmitter, expressed as the width of the spectrum occupied by the occupied signal.

[0052] Figure 10 Shown is the framework of a (ranging or) positioning system, with a transmitter (blue box) transmitting an OFDM signal and one or more base stations receiving this signal. In a ranging system, there is only one transmitter and one receiving base station, and the base station receives the signal and estimates the distance traveled by the signal. In a three-dimensional positioning system, there ...

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Abstract

The invention discloses a signal ranging and positioning method. In the positioning system provided by the invention, given that a plurality of transmitters simultaneously transmit positioning signals for seeking positional information, in order to avoid interference among the positioning signals, a multi-access method is in need of design, which means to use optimal ranging and positioning signals. The method provided by the invention can be used for occupying the widest bandwidth and concentrating energy at two ends of the bandwidth, with the generated signals having the highest distance estimation accuracy; meanwhile, as for the positioning system in which the plurality of transmitters simultaneously transmit signals, the positioning signals of the transmitters are required to have a substantially equal ranging accuracy; and therefore, the optimal positioning and ranging signals (for a mean square bandwidth) occupy almost the entire bandwidth, with neither frequency overlap nor mutual signal interference.

Description

technical field [0001] This patent belongs to the field of signal ranging and positioning. Under the premise of fixed signal bandwidth and transmission power, this signal has the highest ranging and positioning accuracy. Background technique [0002] Such as figure 1 As shown, the frequency domain of the OFDM signal indicates that when the OFDM signal is applied in the communication field, because the communication pursues the transmission rate, although each user only uses a part of it, it will still use up all the subcarriers. [0003] In positioning, PN (or CDMA) signal has always been the mainstream, this is because of the success of PN application in GPS. Including WiMax, although OFDM is used for communication, PN signals are still used for positioning. [0004] Existing literature points out that in delay estimation of ranging or positioning systems, OFDM is better than commonly used pseudo-random sequences. Under the same signal-to-noise ratio, OFDM ranging or posi...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04W64/00H04W4/02
Inventor 王东林杨翰曹辉
Owner HAIMEN BIWEI INTPROP SERVICE CO LTD
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