Distance measuring systems altimeters and aircraft
First Claim
1. A distance measuring system, comprising:
- means for generating a first modulated electrical signal;
a transmitting transducer for receiving the first electrical signal and producing a corresponding modulated acoustic signal to be directed towards and reflected by a surface;
a receiving transducer arranged to receive the reflected acoustic signal and for producing a corresponding second modulated electrical signal; and
processing means for receiving at least the second electrical signal and correlating the modulations thereof to produce an indication of a time delay thereof from which a distance travelled by the acoustic signal can be determined;
wherein the frequency of the acoustic signal is chosen so that it is not at or near the fundamental resonant frequency of either transducer and so that it satisfies at least one of the following conditions;
at or near a higher-order resonant frequency of one or both of the transducers;
at a frequency at which a frequency-dependent directivity index of the transducers is relatively high;
at a frequency at which the ambient acoustic noise level is relatively low; and
at a frequency at which the acoustic reflection loss at the surface is relatively low.
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Accused Products
Abstract
A distance measuring system is described which may be used as an altimeter for a helicopter or for a load carried by its winch. The system comprises: a transmitting transducer for converting a first modulated electrical signal into a corresponding acoustic signal to be directed towards and reflected by a surface; a receiving transducer for converting the received reflected acoustic signal into a corresponding second electrical signal; and a correlation processor for receiving the second electrical signal, or the first and second electrical signals, and correlating the modulations thereof to produce an indication of a time delay thereof from which the distance travelled by the acoustic signal can be determined. The frequency of the acoustic signal is preferably chosen so that it is not at or near the fundamental resonant frequency of either transducer and so that it satisfies at least one of the following conditions: at or near a higher-order resonant frequency of one or both of the transducers; at a frequency at which a frequency-dependent directivity index of the transducers is relatively high; at a frequency at which the ambient acoustic noise level is relatively low; and at a frequency at which the acoustic reflection loss at the surface is relatively low.
31 Citations
4 Claims
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1. A distance measuring system, comprising:
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means for generating a first modulated electrical signal;
a transmitting transducer for receiving the first electrical signal and producing a corresponding modulated acoustic signal to be directed towards and reflected by a surface;
a receiving transducer arranged to receive the reflected acoustic signal and for producing a corresponding second modulated electrical signal; and
processing means for receiving at least the second electrical signal and correlating the modulations thereof to produce an indication of a time delay thereof from which a distance travelled by the acoustic signal can be determined;
wherein the frequency of the acoustic signal is chosen so that it is not at or near the fundamental resonant frequency of either transducer and so that it satisfies at least one of the following conditions;
at or near a higher-order resonant frequency of one or both of the transducers;
at a frequency at which a frequency-dependent directivity index of the transducers is relatively high;
at a frequency at which the ambient acoustic noise level is relatively low; and
at a frequency at which the acoustic reflection loss at the surface is relatively low.
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2. A helicopter having a distance measuring system for use as an altimeter or for obstacle detection, the distance measuring system comprising:
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means for generating a first modulated electrical signal;
a transmitting transducer for receiving the first electrical signal and producing a corresponding modulated acoustic signal to be directed towards and reflected by a surface;
a receiving transducer arranged to receive the reflected acoustic signal and for producing a corresponding second modulated electrical signal; and
processing means for receiving at least the second electrical signal and correlating the modulations thereof to produce an indication of a time delay thereof from which a distance travelled by the acoustic signal can be determined;
wherein the frequency of the acoustic signal is chosen so that it is not at or near the fundamental resonant frequency of either transducer and so that it satisfies at least one of the following conditions;
at or near a higher-order resonant frequency of one or both of the transducers;
at a frequency at which a frequency-dependent directivity index of the transducers is relatively high;
at a frequency at which the ambient acoustic noise level is relatively low; and
at a frequency at which the acoustic reflection loss at the surface is relatively low; and
wherein the frequency of the acoustic signal is chosen so that it satisfies at least one of the following conditions;
at a frequency at which the acoustic noise level produced by the helicopter below the helicopter is relatively low; and
at a frequency at which the acoustic reflection loss at an interface between air and grassland, rock or water is relatively low. - View Dependent Claims (3, 4)
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Specification