The present invention relates to surveillance systems and more specifically relates to a temporary surveillance and security system.
Surveillance systems for monitoring remote installations are well known, and typically include on-site surveillance equipment, such as video cameras, microphones, infrared sensors and the like, positioned at various locations, to capture electronic data and information, as well as visual images of the site. These conventional systems often utilize a central monitor station for receiving and processing the electronic data from the multiple remote installations. Such surveillance systems require a structure on which the camera or other device may be securely mounted at a desirable elevation. The structure may be a wall of a facility, for example.
On a building construction site, for example a site where an apartment building is under construction, such conventional surveillance systems are less than adequate, as the apartment building itself may be the target of theft or vandalism. The nature of the building under construction lends itself to being climbed by persons intent on vandalism, and the camera used for surveillance can be easily tampered with or destroyed, leaving the construction site virtually unguarded. Theft and arson are not uncommon at such sites, and therefor security guards may be hired to watch the site during off-hours. As can be appreciated, such a solution to vandalism problems is costly and may not be as reliable as an unmanned, mechanical surveillance system.
The present invention provides a surveillance system which is especially advantageous for temporary use where a conventional surveillance system would be undesirable, such as at a construction site, outdoor concert event, or political rally. The system is transportable to the site in separate portions and then assembled on the site. Once assembled, the system is effectively indestructible, tamper-proof and highly reliable to use. Advantageously, once the system is no longer needed, it can be disassembled and used again in another location.
Accordingly, a temporary surveillance system is provided by the present invention which overcomes the inadequacies of conventional systems. The system is easily assembled at an area to be surveyed. The system is highly versatile for accommodating a number of different applications for example, for daytime and/or evening monitoring of construction sites, outdoor concert events, political rallies, or any other location or event which could benefit from ongoing surveillance.
Importantly, the system is designed to be easily assembled at a site, and effectively tamper-proof once assembled.
The present surveillance system in accordance with the present invention generally comprises a surveillance assembly, including a platform adapted to support surveillance equipment, for example cameras, and a base, including a substantially hollow enclosure adapted to accommodate a power supply and electronics equipment for controlling the surveillance equipment.
The system further includes a support pole, including a lower portion detachably mounted to the base, and an upper portion detachably mounted to the surveillance assembly platform. Applicable wires and cables for connecting the electronics equipment and the surveillance equipment are provided through conduit aligned along or within the support pole. For example, the support pole may be substantially hollow and when disposed through the base may provide an inlet for running wires and cables from the base enclosure through the pole and into the surveillance assembly. The support pole preferably has an inner diameter of a suitable size to accommodate wires and cables and conduit, which may include for example PVC conduit isolating any communication cables from electrical wires/cables. The support pole may be comprised of a unitary structure of up to about 25 feet or more, or may be comprises of a plurality of separate telescoping segments.
The base can comprise a heavy concrete structure weighing, for example, at least about 2500 pounds, sufficient to prevent the base from being manually displaced. The concrete structure may include a steel frame and steel recessed doors resistant to prying or breaking.
The electronics equipment and surveillance equipment may be connected to a power source by hardwiring or quick connect plugs and receptacles. The power source may be an existing 120V or 220V commercial power source. Preferably, the surveillance assembly further includes a power distribution box, mounted in a water tight enclosure to the upper portion of the support pole, the power distribution box being adapted to receive and distribute electrical power from the power source to the surveillance equipment.
In a preferred embodiment, a circuit box including a receptacle for connecting to an existing power supply is provided and is housed within the enclosure. The circuit box preferably includes a plurality of receptacles for accommodating equipment plugs. A power supply may be included within the base enclosure for providing electrical power to the electronic equipment. If power supply is provided, it is preferably enclosed within the concrete base enclosure. The power supply may be electrically connected to an existing power source through wires disposed through the center of the base. Batteries, generators, solar collectors or other suitable means for providing alternative sources of power may also be provided. These alternative power sources may be enclosed within the base enclosure or may be attached to the platform.
The system may further comprise vent means for facilitating passage of air through the system in order to cool the electronic equipment enclosed in the base. For example, the vent means may include an air inlet within the upper portion of the support pole and a fan within the base enclosure, for drawing ambient, cool air though the air inlet through the pole and into the enclosure and for forcing relatively warmer air out of the base enclosure.
The surveillance equipment may comprise many different pieces of equipment, depending on the application desired. The surveillance equipment may comprise a plurality of cameras, for example video cameras, time lapse, digital, still photography cameras, and/or infrared sensors. The platform may be sized and adapted to support any number of cameras or sensors, between one and up to about 250 pieces of equipment. The surveillance equipment may comprise a multiplexor, which may be a four camera multiplexor, an 8 camera multiplexor or a 16 camera multiplexor. The surveillance equipment may be permanently secured to the platform or may be removable. Other surveillance equipment may be alternatively or additionally be provided, for example, pan and tilt devices, satellite transmission devices, and cell phone applications.
In an alternate embodiment, of the present invention, the base can comprise a heavy, solid concrete block, a heavy metal plate structure, a metal or plastic reinforced tank capable of holding water and/or sand, or a reinforced frame with a bladder capable of holding water and/or sand. Such bases have means for permanently or detachably securing the pole. A secured metal container or box for holding, protecting and securing the power supply and electronic equipment for the surveillance equipment can be permanently or detachably secured to the pole and/or the base.
The features and advantages of the present invention will be more clearly understood and appreciated with reference to the following detailed description when considered in conjunction with the accompanying drawings of which:
Turning now to
The surveillance equipment 16 may include any number and type of device 16 suitable for providing observations of objects. For the sake of simplicity, the surveillance devices 16 shown in
The cameras 20 are shown as secured to the platform 14 by pivotal connectors 22 and the viewing direction and/or angle of the cameras 20 may be controlled by pan and tilt devices (not shown). The platform 14 itself may be a substantially planar element made of steel or other suitable material or materials of construction.
The system 10 further comprises a base 26, including a substantially hollow enclosure 28 sized and adapted to contain equipment, for example electronics equipment 32 for controlling the surveillance equipment 16, for example a video cassette recorder unit 33, and a multiplexor server unit 34. The electronics equipment 32 may be housed within a sub-enclosure 36 made of, for example, plastic, metal, fiberglass or other suitable materials. This sub-enclosure 36 may be equipped with a cooling fan 38, blower or other apparatus to maintain a suitable temperature for effective operation of the equipment 32.
The base 26 can be made of concrete and has a weight sufficient to prevent the base 26 from being displaced by hand. The base 26 may have outer dimensions of, for example, 4′×4′×3′, and inner enclosure dimensions of 1′×2′×4′. In addition, the base may have a weight of between about 1000 pounds and about 5000 pounds, conveniently between 2500 and 3000 pounds. The base 26 is constructed to be substantially impact resistant as well, for example with respect to collision by a motor vehicle such as an automobile. Although not shown, the base 26 may include additional concrete block structures, bolted or otherwise secured to the sides of the base 26, to provide additional weight thereto as additional security against theft or tampering.
As shown, the system 10 further comprises a support pole 40 having an upper portion 42 mounted to the surveillance assembly 12 and a lower portion 44 detachably mounted to the base 26, for example at a top center of the base 26. The pole 40 may be about 25 feet high or more and may be comprised of a single pole structure or may be comprised of multiple telescoping portions (not shown). The height of the pole desired may depend on the elevation of which the surveillance equipment will be best suited for observing a desired range of the site. The pole 40 may be made of steel and preferably includes a smooth surface finish for preventing climbing thereof.
In addition, means, such as suitable wiring and cables 48 are provided for connecting the surveillance equipment 16 on the platform 14 to the electronics equipment 32 contained in the base 26.
In a preferred embodiment, the support pole 40 is substantially hollow and is adapted to accommodate the wires 46 and cables 48 used to functionally connect the electronics 32 with the surveillance equipment 16. Preferably, separate means are provided for connecting communications cables 48 with the surveillance assembly 12, for example the communications cables 48 may be run through PVC pipe 52 or other conduit suitable for effectively separating and shielding communications cables 48 from any electrical field. Alternatively, cables, wires and conduit may be secured to an outer surface of the pole 36.
In one particularly advantageous embodiment of the invention, the base 28 also houses a ground fault breaker (GFI) box 56 electrically connected to receptacle means which may include for example an electrical box 58 having four or more standard plug receptacles as shown for connecting to the electronics equipment 32. The GFI box is connected to an incoming power source of 110 volts or 120 volts or to a higher voltage source. As shown, for security reasons, the GFI box may be powered by a line 59 running through an aperture 60 in a bottom portion or slab 62 of the base enclosure 28. The aperture 60 may be more specifically a portion of PVC conduit having a diameter of about 3 inches centered in the concrete base bottom 62. It should be appreciated that electrical power may alternatively be supplied to the GFI breaker box by other standard means, for example by power sources available through power poles at construction job sites, or by means such as batteries, generators, solar collectors or the like. Battery power can be converted through converters, inverters, or other suitable means.
Preferably, electrical power is provided to the surveillance equipment 16, through a separate power supply 66, for example an uninterruptible power supply (UPS) mounted within the base enclosure 28. The power supply 66 may comprise a single power supply unit for each surveillance device 16 or may be a larger power unit for supplying power to multiple devices 16. The power supply 66 may be mounted within the enclosure 28 by for example first mounting the power supply 66 to a (plywood) board by bolts which are bolted to the enclosure 28 by nuts poured in place while the concrete base is poured during construction of the base 26.
A distribution box 70, preferably mounted to the upper portion 42 of the pole 40, is provided for distributing electrical power from the power supply 66 to the various surveillance devices 16. Preferably, the distribution box 70 is water tight and weather resistant.
As shown in
It is to be appreciated that there are many alternative means for functionally and electrically connecting the surveillance equipment 16 with the electronics equipment 32 and many alternative means for electrically powering these devices, as will be known to those skilled in the art. All such alternative means are considered to be within the scope of the present invention.
Turning now to
Importantly, the system is constructed, so as to be tamper-resistant and indestructible for all reasonable purposes. As mentioned hereinabove, the base 26 itself is a substantially heavy structure. The base 26 also is preferably constructed so that the electronics 32 and other equipment in the enclosure 28 is effectively inaccessible by unauthorized persons. Referring briefly now to
More specifically, for example, turning now to
Advantageously, as shown in
Another embodiment of the present invention is illustrated in
The enclosure has a front frame 148 to receive a front plate 149 to secure the hollow enclosure 156 and the electronic equipment therein (not shown). The front plate receives lock clasps 150 through apertures (not shown) in the front plate. The clasps have holes to receive shackles of locks 138. The hollow enclosure 156 communicates with the hollow pole 40 for wire and cable via hold 145 in the back plate, utility bore 161 in the base 26A, pole bore 160 and window 159 in the pole.
The pole 40 supporting the surveillance platform 14 is received within bore 160 of the base 26A. A pair of retaining plates secured in the base are located on opposite sides of the bore. The plates have pin apertures 164. The pole has pin holes 170 which are can be aligned with apertures 164. The apertures and holes receive pin 166 which is secured on one end by head 167 and by lock 138A on the other end. The pin has lock shackle hole 168 to receive the lock.
Another embodiment of the present invention is shown in
Referring to
The base is fitted with sleeves 196A and 196B to receive and secure the pole 40. Hollow pole 40 has a window 206 to permit communication for cables and wire (not shown) from the equipment and power supplies (not shown) in compartment 194 with the interior of hollow pole 40.
The open top compartment can receive a bladder 198 which can be filled with water via fill spigot 200 to weigh the base down. The bladder is fitted with drain spigot 202 which extends through windows 204 of wall 191 for ease of drainage. The spigots can be lockable to prevent tampering. Alternatively, the open top compartment can be filled with one or more concrete or stone blocks, or with dirt and/or sand to weigh the base down.
Referring to
While this invention has been described with respect to various specific examples and embodiments, it is to be understood that the invention is not limited thereto, and that it can be variously practiced within the scope of the following claims.
This application is a continuation of U.S. patent application Ser. No. 10/127,017, filed Apr. 9, 2002, now U.S. Pat. No. 6,709,171 which is a continuation of U.S. application Ser. No. 09/502,028, filed Feb. 10, 2000, now U.S. Pat. No. 6,375,370.
Number | Name | Date | Kind |
---|---|---|---|
D217396 | Gentile et al. | Apr 1970 | S |
4112818 | Garehime | Sep 1978 | A |
4347590 | Heger et al. | Aug 1982 | A |
4374592 | Geary et al. | Feb 1983 | A |
4474439 | Brown | Oct 1984 | A |
4511886 | Rodriguez | Apr 1985 | A |
4709265 | Silverman et al. | Nov 1987 | A |
4815757 | Hamilton | Mar 1989 | A |
4887080 | Gross | Dec 1989 | A |
4913458 | Hamilton | Apr 1990 | A |
4916594 | Headley | Apr 1990 | A |
4959798 | Gordon et al. | Sep 1990 | A |
4968089 | Murai et al. | Nov 1990 | A |
5065249 | Horn et al. | Nov 1991 | A |
5068773 | Toth | Nov 1991 | A |
5224675 | Ellenberger et al. | Jul 1993 | A |
5289091 | Wada | Feb 1994 | A |
5434614 | Dainty | Jul 1995 | A |
5448320 | Sakai et al. | Sep 1995 | A |
5554984 | Shigenaga et al. | Sep 1996 | A |
5650821 | Hewlett | Jul 1997 | A |
5737657 | Paddock et al. | Apr 1998 | A |
5757286 | Jonsson et al. | May 1998 | A |
5767905 | Archambo | Jun 1998 | A |
5786854 | Slade et al. | Jul 1998 | A |
5790910 | Haskin | Aug 1998 | A |
5819124 | Somner et al. | Oct 1998 | A |
5898381 | Gartner et al. | Apr 1999 | A |
5982418 | Ely | Nov 1999 | A |
5986576 | Armstrong | Nov 1999 | A |
6056450 | Walling | May 2000 | A |
6175343 | Mitchell et al. | Jan 2001 | B1 |
6220379 | Schugt et al. | Apr 2001 | B1 |
6285297 | Ball | Sep 2001 | B1 |
6375369 | Schneider et al. | Apr 2002 | B1 |
Number | Date | Country | |
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20040264954 A1 | Dec 2004 | US |
Number | Date | Country | |
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Parent | 10127017 | Apr 2002 | US |
Child | 10799577 | US | |
Parent | 09502028 | Feb 2000 | US |
Child | 10127017 | US |