The present invention relates to a security device for a bicycle and, more particularly, to an electronic security system for the bicycle.
Conventionally, locks such as chains, foldable locks and cables are used to prevent theft of bicycles. Although, the chains are heavy and difficult to carry, they provide great security for bicycles while cables provide poor security but are lightweight and easy to carry.
Recently, electronic security devices have been employed to secure bicycles. However, employment of the electronic security devices is deterred by battery lifetime and long charging time of the battery. Further, such electronic security devices have poor battery life and do not have an effective alternative charging means, thereby making the process of charging the security device a time consuming process for a rider/user of the bicycle. Moreover, unlocking bicycles when the environment is dark is difficult. Furthermore, insurance companies providing insurance coverage against theft of the bicycles are also interested in information of a type of security device and anchoring means used for parking the bicycle by the users. The current conventional and electronic security devices do not provide such information to an insurance company.
In view of the above, there is a requirement for an electronic security system that ensures easy charging of the battery and provides high level of security for the bicycle in addition to being capable of providing information to the insurance companies regarding type of anchoring device used for parking the bicycle.
In an embodiment, an electronic security system for a bicycle is disclosed. The electronic security system includes an electronic security device, a first connector and a second connector. The electronic security device is disposed on a frame of the bicycle for securing the bicycle. The electronic security device includes a first rechargeable battery and a first security circuit. The first connector is disposed on the electronic security device. The first connector includes a first engagement member. The second connector includes a first end portion and a second end portion, a second rechargeable battery, a second engagement member and a second security circuit. The second end portion is configured to be connected to an anchoring device of a plurality of types of the anchoring devices. The second rechargeable battery is disposed between the first end portion and the second end portion. The second engagement member is configured on the first end portion. The second engagement member is configured to engage with the first engagement member for charging the first rechargeable battery by the second rechargeable battery. The first security circuit and the second security circuit are configured to detect a type of the anchoring device when the second engagement member engages with the first engagement member and provides information of type of the anchoring device to an external system.
In another embodiment, an electronic security system for a bicycle is disclosed. The electronic security system includes an electronic security device, a first connector and a second connector. The electronic security device is disposed on a frame of the bicycle for securing the bicycle. The electronic security device includes a first rechargeable battery and a first security circuit. The first connector is disposed on the frame of the bicycle. The first connector includes a first engagement member electrically coupled with the electronic security device. The second connector includes a first end portion and a second end portion, a second rechargeable battery, a second engagement member and a second security circuit. The second end portion is configured to be connected to an anchoring device of a plurality of types of the anchoring devices. The second rechargeable battery is disposed between the first end portion and the second end portion. The second engagement member is configured on the first end portion. The second engagement member is configured to engage with the first engagement member for charging the first rechargeable battery by the second rechargeable battery. The first security circuit and the second security circuit are configured to detect a type of the anchoring device when the second engagement member engages with the first engagement member and provide information of type of the anchoring device to an external system.
In another embodiment, an electronic security system for a bicycle is disclosed. The electronic security system includes an electronic security device, a first connector and a second connector. The electronic security device is disposed on a frame of the bicycle for securing the bicycle. The electronic security device includes a first rechargeable battery and a first security circuit. The first connector is disposed on the electronic security device. The first connector includes a first engagement member. The second connector includes a first end portion, a second end portion, a second rechargeable battery, a second engagement member and a second security circuit. The second rechargeable battery is disposed between the first end portion and the second end portion. The second engagement member is configured on the first end portion. The second engagement member is configured to engage with the first engagement member for charging the first rechargeable battery by the second rechargeable battery. The first security circuit and the second security circuit are configured to authenticate the second connector to enable engagement of the second engagement member with the first engagement member.
The invention itself, together with further features and attended advantages, will become apparent from consideration of the following detailed description, taken in conjunction with the accompanying drawings. One or more embodiments of the present invention are now described, by way of example/s only, with reference to the accompanied drawings wherein like reference numerals represent like elements and in which:
The drawings referred to in this description are not to be understood as being drawn to scale except if specifically noted, and such drawings are only exemplary in nature.
While the invention is susceptible to various modifications and alternative forms. Specific embodiments thereof have been shown with the help of examples in the drawings and are described in detail below. It should be understood, however that it is not intended to limit the invention to the particular forms disclosed, but on the contrary, the invention is to cover all modifications, equivalents, and alternative fallings within the spirit and the scope of the invention.
Reference in this specification to “one embodiment” or “an embodiment” means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment of the present disclosure. The appearance of the phrase “in an embodiment” in various places in the specification are not necessarily all referring to the same embodiment, nor are separate or alternative embodiments mutually exclusive of other embodiments. Moreover, various features are described which may be exhibited by some embodiments and not by others. Similarly, various requirements are described which may be requirements for some embodiments but not for other embodiments.
Moreover, although the following description contains many specifics for the purposes of illustration, anyone skilled in the art will appreciate that many variations and/or alterations to said details are within the scope of the present disclosure. Similarly, although many of the features of the present disclosure are described in terms of each other, or in conjunction with each other, one skilled in the art will appreciate that many of these features can be provided independently of other features. Accordingly, this description of the present disclosure is set forth without any loss of generality to, and without imposing limitations upon, the present disclosure. For the better understanding of this disclosure, reference will now be made to the embodiments illustrated in greater depth in the accompanying figures and description given below. In the following figures, the same reference numerals are used to identify the same components in various views.
Various embodiments provide different configurations of an electronic security system for a bicycle. The objective of the electronic security system is to protect the bicycle from theft, to communicate with an external system and/or include an alternative charging means. The external system is at least one of an external server of an insurance provider or a user device associated with a user of the bicycle. The electronic security system includes an electronic security device, a first connector and a second connector. For the purpose of the present disclosure, the terms ‘user’ and ‘rider’ have been used interchangeably throughout the present description and refer to a person accessing the electronic security system to lock/unlock the electronic security device that secures the bicycle.
The electronic security device is disposed on a frame of the bicycle. The electronic security device includes a first rechargeable battery, a first security circuit and an integrated bike lock. The first rechargeable battery acts as a power source for the electronic security device. The integrated bike lock is configured to assume an open position and a locked position, such that in the locked position the integrated bike lock restricts motion of the bicycle and in the open position the integrated bike lock allows free motion of the bicycle.
In an embodiment, the first connector is disposed on the electronic security device. Alternatively or additionally, the first connector is disposed on the frame of the bicycle and electrically coupled to the electronic security device. The first connector includes a first engagement member. The first engagement member includes a plurality of pin connectors and one or more notches for engaging with the second connector.
The second connector includes a second rechargeable battery, a second security circuit and a second engagement member. The second connector engages with the first connector to form an electro-mechanical connection between the first connector and the second connector by engaging the second engagement member with the first engagement member. The second rechargeable battery is configured to charge the first rechargeable battery of the electronic security device when the second connector is engaged with the first connector. The second connector is configured to be connected to an anchoring device of a plurality of types of the anchoring devices (e.g., a chain, a cable or a foldable lock) for tethering the bicycle to a dock. In an example embodiment, the second connector can only act as a battery pack for charging the second rechargeable battery, since the second connector includes the rechargeable battery.
The first security circuit and the second security circuit determine the authenticity of the second connector when the second connector is brought into contact with the first connector for engagement purposes. Once the authentication is performed, the second connector is securely engaged with the first connector and thereby the bicycle is anchored. The security circuits are also configured to detect the type of anchoring device used to tether the bicycle, and a communication system provides information on the type of the anchoring device to the external system. The electronic security system includes one or more of various modules such as RFID module, Bluetooth module communicably coupled to the user device for locking and/or unlocking the electronic security system.
In a tethered state, the electronic security system 110 sends tethering data based on a type of anchoring device used with the electronic security system 110, to an external system. The external system is at least one of an external server (such as a sever 135) of an insurance provider or even the user device 120 associated with the user 125 of the bicycle 105. This data is transmitted to the server 135 over a network 130. The network 130 may be a centralized network or may include a plurality of sub-networks that may offer a direct or indirect communication between the electronic security system 110 and the server 135 and communication between the electronic security system 110 and the user device 120. Examples of the network 130 include, but are not limited to, the Internet, local area network (LAN), wide area network (WAN), wireless, wired, and the like.
The server 135 may be located at one place or may be distributed at multiple locations. The server 135 is configured to receive tethering data from such electronic security systems (e.g., the electronic security system 110) used by various users. Information related to tethering data of the bicycle 105 can be retrieved by Insurance companies for determining insurance premiums or for determining awards in case of theft of the bicycle 105. Various components of the electronic security system 110 are described with reference to
The electronic security device 150 is disposed on a frame (see, frame 140) of a bicycle such as the bicycle 105. It must be noted that the electronic security device 150 can be disposed on any frame of the bicycle 105 as long as the electronic security device 150 is able to immobilize the bicycle 105 in a locked state of the electronic security device 150. The electronic security device 150 includes a first rechargeable battery 260, a first security circuit 255 and an integrated wheel lock 280. In an embodiment, the first security circuit 255 is a printed circuit board assembly. The first rechargeable battery 260 acts as a power source for the electronic security device 150. In an embodiment, the battery 260 may also electro-mechanically operate the wheel lock 280 to immobilize wheels of the bicycle 105.
The wheel lock 280 is disposed on relatively lower portion of the electronic security device 150. The wheel lock 280 is configured to assume an open position and a locked position. In the locked position, the wheel lock 280 restricts motion of the wheel of the bicycle 105 and there is no such restriction in the open position of the wheel lock 280. The wheel lock 280 may be configured in a variety of ways. For instance, in the illustrated embodiment, the wheel lock 280 includes a motor 285, a worm gear 290 and a locking shackle 295. The motor 285 is powered by the battery 260 and is configured to provide rotational motion to the worm gear 290. The worm gear 290 is configured to actuate motion of the locking shackle 295, through worm threads of predetermined length disposed on a portion of circumference of the locking shackle 295. In one non-limiting implementation, the wheel lock 280 is in the locked position (restricting cycle movement) when the locking shackle 295 moves in a clockwise direction, and movement of the locking shackle 295 in an anti-clockwise direction opens the locking shackle 295 keeping the wheel lock 280 in the open position. Alternatively, the locking shackle 295 can be configured to open (open position) when the locking shackle 295 moves in clockwise direction and the locking shackle 295 can be configured to close (closed position) when the locking shackle 295 moves in anti-clockwise direction.
In an embodiment, the first connector 250 is disposed in the electronic security device 150. In another embodiment, the first connector 250 can be disposed anywhere on the frame of the bicycle 105. The first connector 250 entails a port connection to the first rechargeable battery 260 of the electronic security device 150 (refer
Referring now to
At least some example embodiments of the male connector 300 are hereinafter described with reference to
Referring to
The motor 310 provides rotational motion to the lead screw 325 on actuation. A first end portion 325a of the lead screw 325 is coupled to the motor 310 and the second end portion 325b is coupled to the push rod 320. A rotation of the lead screw 325 actuates the push rod 320, and the motion of the push rod 320 actuates the second engagement member 315 to engage or disengage with the first engagement member 270 of the female connector 250.
Referring now to
Referring now to
The second connector 300 includes a biometric sensor module 385 (shown in
As shown in
Upon authentication, the motor 310 is activated thereby rotating the lead screw 325. The translational motion of the lead screw 325 is transferred to the push rod 320 thereby allowing the push road 320 to move forward. The forward motion of the push rod 320 pushes the ball bearings 330a, 330b outward and the ball bearings 330a, 330b protrude from the second engagement member 315. The ball bearings 330a, 330b that are protruding from the second engagement member 315 move into the notches 275 of the female connector 250, thereby establishing the electro-mechanical locking between the male connector 300 and the electronic security device 150. Alternatively, in the configurations shown in
When the pin connector 335 of the male connector 300 and the pin connector 265 of the female connector 250 are in an engaged state, the second rechargeable battery 305 of the male connector 300 charges the first rechargeable battery 260 of the electronic security device 150. To unlock the electronic security device 150, the male connector 300 has to be actuated to disengage. In an embodiment, the male connector 300 is actuated to disengage from the female connector 250 through the pairing module 375 (shown in
Referring now to
Referring now to
Various embodiments of the present disclosure advantageously provide an electronic security system that provides an effective means for charging the electronic security device. Further, the electro-mechanical locking between the electronic security device and the male connector provides efficient security to the bicycle. Furthermore, the male connector is designed such that it can be coupled to different types of locks. Moreover, the electronic security device notifies the user and/or servers about the type of connection used to tether the bicycle. Insurance provides can access the servers to retrieve the type of connection used to tether the bicycle. It should also be appreciated that the embodiments of the present disclosure can be applied to the existing bicycles. The electronic security system further provides LED lights on the connector to enable easy engagement of the connector and the electronic security device in dark conditions.
While few embodiments of the present disclosure have been described above, it is to be understood that the disclosure is not limited to the above embodiments and modifications may be appropriately made thereto within the spirit and scope of the disclosure.
The above description is given by way of example only and various modifications may be made by those skilled in the art. The above specification, examples and data provide a complete description of the structure and use of exemplary embodiments. Although various embodiments have been described above with a certain degree of particularity, or with reference to one or more individual embodiments, those skilled in the art could make numerous alterations to the disclosed embodiments without departing from the spirit or scope of this specification.
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Number | Date | Country | |
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20190047646 A1 | Feb 2019 | US |