The present invention relates to a method for the transmission of data according to the preamble of the patent claim 1.
Such a method is known from the publication DE 101 38 217.0. Therein, information packets are transmitted between a base station and a transponder. The information packets consist of a header section and a middle section with a data region. In the middle section, the data of the data region are encoded with the identifications allocated to the logic values of the information symbols in the header section. A disadvantage of the method is that disturbing or noisy interferences reduce the reliability of the data transmission in the communication due to reflections and/or absorptions when utilized in the range of UHF and higher. For the correction of the read errors, the entire data packet must be transmitted.
A further method is known from the publication EP 473,569 B1. Therein, digital data are exchanged between a base station and a passive transponder by means of an amplitude modulated carrier wave. The individual bits of a data word consist of a time span or interval in which the electromagnetic field is switched on and a time span or interval in which the electromagnetic field (field gap or notch) is switched off, whereby the field gap serves as a separator between two successive bits. The logic value of the bits is determined by the length of the time in which the electromagnetic field is switched on. The fixed time amount of the field gap is summed or additionally counted for the total time for the representation of the individual bits. Furthermore, in the passive system, the energy for the transponder is acquired out of the carrier field by means of absorption modulation.
Due to the increasing security or safety demands, a plurality of information packets must be modulated onto a carrier wave in ever-shorter time spans or intervals. Preferably an amplitude modulation (ASK) is used for the modulation. In order to achieve a higher data transmission rate and a higher transmission distance or range, carrier frequencies in the range of UHF and microwaves are being increasingly utilized in the field of the transponders. The basic foundation of the bi-directional data transmission between transponder and base station is formed by a data protocol, which, among other things, sets or fixes the number of the information symbols, such as for example the logic values per data bit, and also defines the identification of the individual symbols. Especially in the UHF range, read errors arise in the data transmission due to change or variation of the transmission conditions as a result of reflections and the constructive and destructive interferences associated therewith. -Because this results in a repeated transmission of the data word, the effective data transmission rate is considerably reduced.
A disadvantage of the previous methods is that the effective data transmission rate is reduced due to the transmission errors especially in the range of very high frequencies due to the fluctuating transmission conditions. This reduction of the data transmission rate is noticeable in a disturbing or interfering manner in time-critical applications. It is an object of the present invention to set forth a method for the transmission of data, which increases the reliability of the data transmission and can be carried out in a simple and economical manner.
This object is achieved according to the invention by a method of the above mentioned type with the characterizing features of the patent claim 1. Favorable embodiments are the subject of dependent claims. An apparatus for the realization or carrying out of the method is given by the claims 7 and 8.
Accordingly, the essence of the invention consists in that the reliability is increased in connection with an additional test signal in a transmission. For this purpose, information packets are modulated onto an electromagnetic wave by a base station and a transponder. The information packet comprises a data section with a data word, whereby the data word is embodied as a sequence of bits, to the logic value of which a modulation state is respectively allocated, and in which respectively one bit of the bit sequence is transmitted by means of a time interval generated from two successive timing or clock pulses. Moreover, during the time interval, a test signal with a prescribed time duration is generated, and a time-constant modulation state is allocated to the test signal. In this regard, investigations of the applicant have shown that it is advantageous to insert the test signal at the beginning of a time interval.
It is an advantage of the method that, by means of the insertion of the test signal, independently of the modulation method, a prescribed modulation state is given, which allows to be used as a reference point for the determination of the logic value of the bit. Thereby, the duration of the test signal is given and can be communicated to the receiver in the header section of the respective information packet. A further advantage is that the duration of the test signal is independent of the length of the time interval.
In a further embodiment of the method, for the decoding of the received bit sequence, the logic value of the bit transmitted in the time interval is derived from its modulation state in a time point determined by the duration of the test signal. Further it is advantageous to allocate a prescribed modulation state to the test signal during the transmission of a data section. Thereby, the detection of the modulation state during an entire time interval by means of integration methods is omitted. Since the likelihood of the detection of a bit error, especially in the range of UHF, through an undesired change of the modulation state as a result of reflections is substantially reduced, the reliability of the data transmission and the effective data transmission rate is substantially increased. Furthermore, bit errors can be recognized and immediately corrected, already during the transmission of the respective time interval, from the modulation state that is prescribed at a predetermined time point. The correction is checked after the completion of the transmission of the data word by means of one or more test bits (CRC region). Investigations of the applicant have shown that a substantial increase of the effective data transmission rate is achieved hereby.
Furthermore, other investigations of the applicant have shown that the control of the modulation state in connection with the transmission of a test signal in the header section can be carried out in a simple manner by means of a so-called “peek detector”, and the current consumption can be reduced through the saving or avoiding of a complicated and costly time measuring unit. Thereby, the communication distance or range is increased especially for passive transponders.
The inventive apparatus shall be explained in the following on the basis of the example embodiments in connection with several schematic drawings. It is shown by:
a a first timing or clock signal for a data transmission, and
b a time-limited test signal, and
c a bit sequence of a data word that has been transmitted, and
d the time course of the modulation state, and
a a second timing or clock signal, and
b a test signal, and
c a bit sequence of a data word that is to be transmitted, and
d a modulation signal, and
The time courses of the signals illustrated in the
In the following, the
An advantage of the invention is that, through the test signal, the logic value of the respective transmitted bit is extracted in the receiver through detection of the modulation change and of the modulation state at the time point Z1. If a different change of the modulation state other than from high to low exists at the time point Z1, then a bit error is determined and immediately corrected, that is to say from the detected logic state one is corrected to a logic state zero.
In the following, the
The course or progression of the modulation state resulting from the
In the
It is an advantage of the apparatus or arrangement that the length of the test signal can be changed in a simple manner through the height or magnitude of a value, and that the test signal can be integrated into an existing control unit in a current-saving manner through the small or low required additional circuit effort, complexity or expense.
A further apparatus or arrangement for the integration of a test signal to each bit of a bit sequence of a data word is illustrated in the
It is an advantage of the apparatuses, that by these apparatuses, in a simple manner, a test signal can be integrated into a data transmission independent of the respective modulation method. Thereby, the effective data transmission rate is considerably increased. Moreover, both control apparatus can be carried out or embodied in a very current-saving manner.
Number | Date | Country | Kind |
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102 04 317.5 | Feb 2002 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP03/00325 | 1/15/2003 | WO |